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CN102979168B - Industrialized multi-story high-rise assembled steel structure frame - centrally-braced system - Google Patents

Industrialized multi-story high-rise assembled steel structure frame - centrally-braced system Download PDF

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CN102979168B
CN102979168B CN201210486817.5A CN201210486817A CN102979168B CN 102979168 B CN102979168 B CN 102979168B CN 201210486817 A CN201210486817 A CN 201210486817A CN 102979168 B CN102979168 B CN 102979168B
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plate
truss
angle truss
girder
single angle
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CN102979168A (en
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刘学春
张爱林
郭志鹏
杨博
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China Railway Construction Group Co Ltd
Beijing Engineering Co Ltd of China Railway Construction Group Co Ltd
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Beijing University of Technology
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Abstract

一种工业化多高层装配式钢结构框架-中心支撑体系,属于结构工程技术领域,包括装配式桁架板、装配式法兰柱和中心支撑构件;所述装配式桁架板在工厂预制,在施工现场将装配式桁架板通过其梁端封板或者柱座节点相互拼接,作为框架结构梁板层;所述的框架结构梁板层通过装配式法兰柱进行上下连接形成多层钢框架结构;在所述钢框架结构的基础上,将中心支撑构件连接到框架结构梁板层中的桁架梁或柱底、顶部作为抗侧力构件;所述构件均在工厂预制,施工现场通过螺栓进行装配;本发明将模块化,工厂化,标准化和装配化相结合,实现了工厂化生产,现场快速装配,在保证施工质量的前提下,提高了施工速度,减少了施工工期,降低了工程造价。

An industrialized multi-story fabricated steel structure frame-central support system, which belongs to the technical field of structural engineering, includes fabricated truss panels, fabricated flange columns, and central support members; the fabricated truss panels are prefabricated in factories, and The assembled truss plates are spliced with each other through their beam end seal plates or column base nodes to form a frame structure beam-slab layer; the frame structure beam-slab layers are connected up and down through assembled flange columns to form a multi-layer steel frame structure; On the basis of the steel frame structure, the central support member is connected to the truss beam or the bottom and top of the column in the frame structure beam slab layer as the lateral force resistance member; the members are all prefabricated in the factory, and assembled by bolts at the construction site; The invention combines modularization, factoryization, standardization and assembly, realizes factory production, on-site quick assembly, improves construction speed, reduces construction period, and reduces project cost under the premise of ensuring construction quality.

Description

一种工业化多高层装配式钢结构框架-中心支撑体系An industrialized multi-story assembled steel structure frame-central support system

技术领域technical field

本发明涉及一种工业化多高层装配式钢结构框架-中心支撑体系,属于结构工程技术领域。The invention relates to an industrial multi-high-rise assembled steel structure frame-central support system, which belongs to the technical field of structural engineering.

背景技术Background technique

我国每年城乡新建房屋面积20亿平方米,其中80%以上为高能耗建筑,我国单位建筑面积能耗是发达国家的2倍以上。据中国钢协统计,2011年我国钢产量突破7亿吨大关,连续16年稳居世界各国钢产量首位,发达国家钢结构建筑面积占总建筑面积50%以上,日本占到80%,而我国不到4%。中国作为世界上建筑规模、钢材产量最大的国家,房屋钢结构的发展严重滞后。my country's annual urban and rural housing area is 2 billion square meters, of which more than 80% are high-energy buildings, and the energy consumption per unit building area in my country is more than twice that of developed countries. According to the statistics of the China Iron and Steel Association, in 2011, my country's steel output exceeded 700 million tons, ranking first in the world's steel output for 16 consecutive years. Our country is less than 4%. As the country with the largest construction scale and steel output in the world, China lags behind seriously in the development of housing steel structures.

目前,国内外对高层钢结构住宅的系统研究正处于起步阶段,工业化装配式高层钢结构体系创新势在必行。传统的钢结构住宅建筑施工时采用了大量的焊接,施工速度慢,对环境的污染严重,最重要的是焊缝的质量不宜控制,严重影响建筑物的安全性能。At present, the systematic research on high-rise steel structure residences at home and abroad is in its infancy, and the innovation of industrially assembled high-rise steel structure systems is imperative. A lot of welding is used in the construction of traditional steel structure residential buildings, the construction speed is slow, and the pollution to the environment is serious. The most important thing is that the quality of the welds is not suitable for control, which seriously affects the safety performance of the building.

传统的钢框架结构体系,结构的侧向刚度难以满足要求,变形较大,容易引起非结构构件的破坏,工业化多高层装配式钢结构框架-中心支撑体系,在钢框架的基础上增加了横向和纵向中心支撑,提高了结构的侧向刚度,改善了结构的变形性能。In the traditional steel frame structure system, the lateral stiffness of the structure is difficult to meet the requirements, and the deformation is large, which is easy to cause damage to non-structural components. The industrialized multi-story fabricated steel structure frame-central support system adds lateral stiffness to the steel frame. And longitudinal central support, which increases the lateral stiffness of the structure and improves the deformation performance of the structure.

发明内容Contents of the invention

本发明提出了一种属于结构工程技术领域的工业化多高层装配式钢结构框架-中心支撑体系。其目的在于在钢结构体系的生产和施工中,将模块化,工厂化,标准化和装配化相结合,实现了工厂化生产,现场快速装配,在保证施工质量的前提下,提高了施工速度,减少了施工工期,降低了工程造价。该结构体系能够实现主体钢结构框架和抗侧力构件的快速安装,并且能够抵抗地震和风荷载,体现了钢结构的优势。The invention proposes an industrial multi-high-rise assembled steel structure frame-central support system belonging to the technical field of structural engineering. Its purpose is to combine modularization, factoryization, standardization and assembly in the production and construction of the steel structure system, realize factory production, on-site quick assembly, and improve the construction speed on the premise of ensuring the construction quality. The construction period is reduced and the project cost is reduced. The structural system can realize the rapid installation of the main steel structure frame and lateral force-resistant members, and can resist earthquake and wind loads, reflecting the advantages of steel structures.

所述工业化多高层装配式钢结构框架-中心支撑体系,包括装配式桁架板、装配式法兰柱和中心支撑构件;The industrialized multi-story fabricated steel structure frame-central support system includes a fabricated truss plate, a fabricated flange column and a central support member;

所述装配式桁架板包括配有角钢腹杆的格构式桁架梁、柱座节点和楼板,所述格构式桁架梁通过梁端封板,与其他格构式桁架梁或者柱座节点连接,形成桁架板底部框架,再将楼板支撑于桁架板底部框架内并进行连接,形成装配式桁架板;所述装配式桁架板在工厂预制,在施工现场将装配式桁架板通过其梁端封板或者柱座节点相互拼接,作为框架结构梁板层;所述的框架结构梁板层通过装配式法兰柱进行上下连接形成多层钢框架结构,所述的装配式法兰柱位于装配式桁架板上的柱座节点上;在所述钢框架结构的基础上,将中心支撑构件连接到框架结构梁板层中的桁架梁或柱底、顶部作为抗侧力构件;所述的装配式桁架板,装配式法兰柱和中心支撑构件均在工厂预制,施工现场通过螺栓进行装配。The prefabricated truss plate includes lattice truss beams equipped with angle steel webs, column base nodes and floor slabs, and the lattice truss beams are connected to other lattice truss beams or column base nodes through beam end sealing plates , form the bottom frame of the truss slab, and then support the floor in the bottom frame of the truss slab and connect them to form a prefabricated truss slab; the prefabricated truss slab is prefabricated in the factory, and the truss slab is sealed at the construction site The slabs or column base nodes are spliced with each other as the beam-slab layer of the frame structure; the beam-slab layer of the frame structure is connected up and down through the assembled flange column to form a multi-layer steel frame structure, and the assembled flange column is located in the assembled On the column base node on the truss plate; on the basis of the steel frame structure, the central support member is connected to the truss beam or column bottom and top in the frame structure beam slab layer as lateral force resistance members; the assembled The truss panels, fabricated flange columns and central support members are all prefabricated at the factory and assembled by bolts at the construction site.

所述工业化多高层装配式钢结构框架-中心支撑体系,其装配式桁架板包括三种规格,分别为A板,B板与C板;In the industrialized multi-story fabricated steel structure frame-central support system, the fabricated truss plates include three specifications, namely A plate, B plate and C plate;

所述A板包括柱座节点13、双角钢桁架长主梁14、双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17、连接板I18、连接板II20和楼板19,其特征在于:双角钢桁架主梁15和双角钢桁架长主梁14相互垂直,且均通过梁端封板,与双向柱座节点13上的槽钢连板采用螺栓相连,并且连接处的上下端面处分别焊接有一连接板II20,连接板II20的两端分别连接在双角钢桁架主梁15和双角钢桁架长主梁14的上下弦杆上;双角钢桁架主梁15的另一端连接有与双角钢桁架长主梁14水平的单角钢桁架长主梁16,双角钢桁架主梁15所述端部与单角钢桁架长主梁16端部的上下弦杆和梁端封板分别焊接相连,且双角钢桁架主梁15与单角钢桁架长主梁16再通过上下两个断面的连接板I18相连,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板I18焊接相连;单角钢桁架次梁17连接在所述的双角钢桁架长主梁14和单角钢桁架长主梁16的另一端,与双角钢桁架主梁15水平相对,单角钢桁架次梁17一端端部与单角钢桁架长主梁16另一端部的上下弦杆和梁端封板分别焊接相连,且单角钢桁架次梁17与单角钢桁架长主梁16之间再通过连接在上下弦杆处的两个连接板I18连接;单角钢桁架次梁17另一端端部与双角钢桁架长主梁14之间通过连接在上下弦杆处的两个连接板II20连接;所述的双角钢桁架长主梁14、双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17构成一长方形框架;所述的两个长方形框架进行连接构成一个拼接的底部框架;两个长方形框架中的单角钢桁架次梁17对齐并通过螺栓进行连接,并且两根双角钢桁架长主梁14位于一条直线上,两根单角钢桁架长主梁16位于一条直线上;两根双角钢桁架长主梁14的上下端均通过梁端封板与三向柱座节点13两个相对方向上的槽钢连板采用螺栓相连,所述的两根单角钢桁架次梁17连接在三向柱座节点13上的与所述两个方向垂直的槽钢连板上;所述底部框架通过桁架梁上弦杆上部锚固件与两块楼板19相连;所述A板的所有构件均在工厂中预制和组装;The A plate includes a column base node 13, a double-angle steel truss long main beam 14, a double-angle steel truss main beam 15, a single-angle steel truss long main beam 16, a single-angle steel truss secondary beam 17, a connecting plate I18, a connecting plate II20 and a floor slab 19 , which is characterized in that: the main girder 15 of the double-angle steel truss and the long main girder 14 of the double-angle steel truss are perpendicular to each other, and both are connected to the channel steel connecting plate on the two-way column base node 13 by bolts through the beam end sealing plate, and the joints at the joint A connection plate II20 is respectively welded at the upper and lower end faces, and the two ends of the connection plate II20 are respectively connected to the upper and lower chords of the double-angle steel truss main beam 15 and the double-angle steel truss long main beam 14; the other end of the double-angle steel truss main beam 15 is connected with The long main girder 16 of the single-angle steel truss horizontal to the long main girder 14 of the double-angle steel truss, and the ends of the main beam 15 of the double-angle steel truss are respectively welded and connected with the upper and lower chords and the beam end sealing plate at the end of the long main girder 16 of the single-angle steel truss , and the main girder 15 of the double-angle steel truss and the long main girder 16 of the single-angle steel truss are connected through the connecting plate I18 of the upper and lower sections, and the upper and lower chords of the main beam 15 of the double-angle steel truss and the long main girder 16 of the single-angle steel truss are connected with the two The block connecting plate I18 is welded and connected; the single-angle steel truss secondary beam 17 is connected to the other end of the double-angle steel truss long main beam 14 and the single-angle steel truss long main beam 16, and is horizontally opposite to the double-angle steel truss main beam 15, and the single-angle steel truss One end of the secondary beam 17 is welded to the upper and lower chords of the other end of the long main girder 16 of the single-angle steel truss and the beam end sealing plate respectively, and the secondary beam 17 of the single-angle steel truss and the long main beam 16 of the single-angle steel truss are connected by The two connecting plates I18 at the upper and lower chords are connected; the other end of the single-angle steel truss secondary beam 17 is connected with the long main beam 14 of the double-angle steel truss through two connecting plates II20 connected at the upper and lower chords; The long main beam 14 of the double-angle steel truss, the main beam 15 of the double-angle steel truss, the long main beam 16 of the single-angle steel truss, and the secondary beam 17 of the single-angle steel truss form a rectangular frame; the two rectangular frames are connected to form a spliced bottom frame ; The single-angle steel truss secondary beams 17 in the two rectangular frames are aligned and connected by bolts, and two double-angle steel truss long main beams 14 are located on a straight line, and two single-angle steel truss long main beams 16 are located on a straight line; The upper and lower ends of the long main girder 14 of the double-angle steel truss are connected by bolts to the channel steel connecting plates in two opposite directions of the three-way column base node 13 through the beam end sealing plate, and the two single-angle steel truss secondary beams 17 are connected On the channel steel connecting plate perpendicular to the two directions on the three-way column base node 13; the bottom frame is connected to the two floor slabs 19 through the upper anchorage of the upper chord of the truss beam; all members of the A plate are Prefabricated and assembled in factories;

所述B板包括双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17、连接板I18、连接板II20和楼板19,双角钢桁架主梁15和单角钢桁架长主梁16相互垂直,双角钢桁架主梁15端部与单角钢桁架长主梁16端部的上下弦杆和梁端封板分别焊接相连,且再通过上下两个断面的连接板I18相连,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板I18焊接相连;双角钢桁架主梁15的另一端通过上下两个断面的连接板II20连接有与所述单角钢桁架长主梁16水平的另一根单角钢桁架长主梁16,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板II20焊接相连;单角钢桁架次梁17连接在所述的两根双单角钢桁架长主梁16的另一端,与双角钢桁架主梁15水平相对,单角钢桁架次梁17与两根单角钢桁架长主梁16的连接形式和所述的双角钢桁架主梁15与两根单角钢桁架长主梁16的连接形式相同;所述的双角钢桁架主梁15、两根单角钢桁架长主梁16、单角钢桁架次梁17构成一长方形框架;所述的两个长方形框架进行连接构成一个拼接的底部框架;两个长方形框架中的单角钢桁架次梁17对齐并通过螺栓进行连接,并且一个长方形框架水平相对的两根单角钢桁架长主梁16和另一个长方向框架水平相对的两根单角钢桁架长主梁16分别位于一条直线上;所述底部框架通过桁架梁上弦杆上部锚固件与两块楼板19相连;所述B板的所有构件均在工厂中预制和组装;The B plate includes double-angle steel truss main beam 15, single-angle steel truss long main beam 16, single-angle steel truss secondary beam 17, connecting plate I18, connecting plate II20 and floor slab 19, double-angle steel truss main beam 15 and single-angle steel truss long main beam The beams 16 are perpendicular to each other, the ends of the double-angle steel truss main beam 15 are welded to the upper and lower chords and beam end sealing plates at the end of the single-angle steel truss long main beam 16, and then connected through the connecting plates I18 of the upper and lower sections, and The upper and lower chords of the double-angle steel truss girder 15 and the single-angle steel truss long main girder 16 are connected by welding with two connection plates I18; the other end of the double-angle steel truss main beam 15 is connected with all Another single-angle steel truss long main beam 16 at the level of the single-angle steel truss long main beam 16, and the upper and lower chords of the double-angle steel truss main beam 15 and the single-angle steel truss long main beam 16 are connected by welding with two connecting plates II20; The single-angle steel truss secondary beam 17 is connected to the other end of the two double-single-angle steel truss long main beams 16, and is horizontally opposite to the double-angle steel truss main beam 15, and the single-angle steel truss secondary beam 17 is connected to the two single-angle steel truss long main beams. The connection form of 16 is identical with the connection form of described double-angle steel truss main beam 15 and two single-angle steel truss long main beams 16; Described double-angle steel truss main beam 15, two single-angle steel truss long main beams 16, single Angle steel truss secondary beams 17 form a rectangular frame; the two rectangular frames are connected to form a spliced bottom frame; single angle steel truss secondary beams 17 in the two rectangular frames are aligned and connected by bolts, and a rectangular frame is horizontal The two opposite long main girders 16 of single-angle steel trusses and the two horizontally opposite long main girders 16 of single-angle steel trusses of the other longitudinal frame are respectively located on a straight line; The floor plates 19 are connected; all components of the B plate are prefabricated and assembled in the factory;

所述C板包括柱座节点13、双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17、连接板I18、连接板II20和楼板19,双角钢桁架主梁15和单角钢桁架长主梁16相互垂直,且均通过梁端封板,与三向柱座节点13上的两个相邻的槽钢连板采用螺栓相连,并且连接处的上下端面处分别焊接有一连接板II20,连接板II20的两端分别连接在双角钢桁架主梁15和单角钢桁架长主梁16的上下弦杆上;双角钢桁架主梁15的另一端通过焊接连接有与单角钢桁架长主梁16水平的另一根单角钢桁架长主梁16,双角钢桁架主梁15端部与这根单角钢桁架长主梁16端部的上下弦杆和梁端封板分别焊接相连,且双角钢桁架主梁15与单角钢桁架长主梁16再通过上下两个断面的连接板I18相连,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板I18焊接相连;单角钢桁架次梁17连接在所述的两根单角钢桁架长主梁16的另一端,与双角钢桁架主梁15水平相对,单角钢桁架次梁17一端端部与单角钢桁架长主梁16另一端部的上下弦杆和梁端封板分别焊接相连,且单角钢桁架次梁17与单角钢桁架长主梁16之间再通过连接在上下弦杆处的两个连接板I18连接;单角钢桁架次梁17另一端端部与单角钢桁架长主梁16之间通过连接在上下弦杆处的两个连接板II20连接;所述的双角钢桁架主梁15、两根单角钢桁架长主梁16、单角钢桁架次梁17构成一长方形框架;所述的两个长方形框架进行连接构成一个拼接的底部框架;两个长方形框架中的单角钢桁架次梁17对齐并通过螺栓进行连接,并且一个长方形框架水平相对的两根单角钢桁架长主梁16和另一个长方向框架水平相对的两根单角钢桁架长主梁16分别位于一条直线上;两根单角钢桁架长主梁16的上下端均通过梁端封板与四向柱座节点13两个相对方向上的槽钢连板采用螺栓相连,所述的两根单角钢桁架次梁17连接在三向柱座节点13上的与所述两个方向垂直的槽钢连板上;所述底部框架通过桁架梁上弦杆上部锚固件与两块楼板19相连;所述C板的所有构件均在工厂中预制和组装;Described C plate comprises column seat node 13, double-angle steel truss main beam 15, single-angle steel truss long main beam 16, single-angle steel truss secondary beam 17, connecting plate I18, connecting plate II20 and floor slab 19, double-angle steel truss main beam 15 and The long main girders 16 of the single-angle steel truss are perpendicular to each other, and they are all connected by bolts to the two adjacent channel steel connecting plates on the three-way column base node 13 through the beam end sealing plate, and the upper and lower end faces of the joint are respectively welded with a Connecting plate II20, the two ends of connecting plate II20 are respectively connected on the upper and lower chords of the double-angle steel truss main beam 15 and the single-angle steel truss long main beam 16; the other end of the double-angle steel truss main beam 15 is connected with the single-angle steel truss by welding Another single-angle steel truss long main beam 16 at the level of the long main beam 16, and the ends of the double-angle steel truss main beam 15 are respectively welded to the upper and lower chords and beam end sealing plates at the end of the single-angle steel truss long main beam 16, And the double-angle steel truss main girder 15 is connected with the single-angle steel truss long main beam 16 through connecting plates I18 of the upper and lower sections, and the upper and lower chords of the double-angle steel truss main girder 15 and the single-angle steel truss long main girder 16 are connected with two The connecting plate I18 is welded and connected; the single-angle steel truss secondary beam 17 is connected to the other end of the two single-angle steel truss long main beams 16, and is horizontally opposite to the double-angle steel truss main beam 15, and one end of the single-angle steel truss secondary beam 17 is connected to the The upper and lower chords of the other end of the long main girder 16 of the single-angle steel truss and the beam end sealing plate are connected respectively by welding, and the secondary beam 17 of the single-angle steel truss and the long main girder 16 of the single-angle steel truss are connected by two chords at the upper and lower chords. Two connecting plates I18 are connected; the other end of the single-angle steel truss secondary beam 17 is connected with the single-angle steel truss long main beam 16 through two connecting plates II20 connected at the upper and lower chord places; the double-angle steel truss main beam 15 , two long main girders 16 of single-angle steel trusses, and secondary beams 17 of single-angle steel trusses constitute a rectangular frame; the two rectangular frames are connected to form a spliced bottom frame; Align and connect by bolts, and two single-angle steel truss long main girders 16 horizontally opposite in a rectangular frame and two single-angle steel truss long main girders 16 horizontally opposite in another long direction frame are respectively located on a straight line; The upper and lower ends of the long main girder 16 of the angle steel truss are connected by bolts to the channel steel connecting plates on the two opposite directions of the four-way column base node 13 through the beam end sealing plate, and the two single angle steel truss secondary beams 17 are connected in three To the channel steel connecting plate perpendicular to the two directions on the column base node 13; the bottom frame is connected to the two floor slabs 19 through the anchors on the upper chord of the truss beam; all the components of the C plate are in the factory prefabrication and assembly;

在工业化多高层装配式钢结构框架-中心支撑体系中,所述A板和B板,将A板和B板水平对齐,将A板的双角钢桁架主梁15的没有连接柱座的一端和B板的双角钢桁架主梁15有连接板I18的一端通过梁端封板用螺栓进行拼接;将A板的单角钢桁架次梁17的没有连接柱座的一端和B板的单角钢桁架次梁17的有连接板I18的一端通过螺栓将梁端封板进行拼接;在A板的单角钢桁架长主梁16和B板的单角钢桁架长主梁16节点板处通过螺栓将单梁每隔一段固定距离进行拼接,使得两片单梁连接成为双梁;然后在拼接节点上下两面用螺栓加盖板;从而完成A板和B板的拼接;In the industrialized multi-story fabricated steel structure frame-central support system, the A plate and the B plate are horizontally aligned with the A plate and the B plate, and one end of the double-angle steel truss girder 15 of the A plate is not connected to the column seat and The double-angle steel truss main girder 15 of B plate has one end of connecting plate I18 to be spliced by beam end sealing plate with bolt; One end of the beam 17 with the connecting plate I18 is spliced with the beam end sealing plate by bolts; at the single-angle steel truss long main beam 16 of the A plate and the single-angle steel truss long main beam 16 node plate of the B plate, the single beam is connected to each other by bolts. Splice at a fixed distance so that two single girders are connected to form a double girder; then use bolts on the upper and lower sides of the splicing joint to add cover plates; thus completing the splicing of A and B plates;

在工业化多高层装配式钢结构框架-中心支撑体系中,所述B板和C板,将B板和C板水平对齐,将B板的双角钢桁架主梁15的有连接板II20的一端和C板的三向柱座节点13外露槽钢连板通过梁端封板采用螺栓相连;将B板的单角钢桁架次梁17的有连接板II20的一端和C板的四向柱座节点13外露槽钢连板通过梁端封板采用螺栓相连;将B板的两根单角钢桁架长主梁16的上下端均通过梁端封板与四向柱座节点13两个相对方向上的槽钢连板采用螺栓相连,将B板的单角钢桁架长主梁16的另一端分别通过梁端封板与C板的三向柱座节点13上与所述外露槽钢垂直的槽钢连板通过梁端封板采用螺栓相连;在B板的单角钢桁架长主梁16和C板的单角钢桁架长主梁16节点板处通过螺栓将单梁每隔一段固定距离进行拼接,使得两片单梁连接成为双梁;然后在拼接节点上下两面用螺栓加盖板;从而完成B板和C板的拼接。In the industrialized multi-story fabricated steel structure frame-central support system, the B board and the C board are horizontally aligned with the B board and the C board, and one end of the double-angle steel truss girder 15 of the B board with the connecting plate II20 and the The exposed channel steel connecting plate of the three-way column base node 13 of the C plate is connected by bolts through the beam end sealing plate; the end of the single-angle steel truss secondary beam 17 of the B plate with the connecting plate II20 is connected with the four-way column base node 13 of the C plate The exposed channel steel connecting plates are connected by bolts through the beam end sealing plate; the upper and lower ends of the two single-angle steel truss long main girders 16 of the B plate are passed through the grooves in the two opposite directions of the beam end sealing plate and the four-way column base node 13 The steel connecting plates are connected by bolts, and the other end of the long main girder 16 of the single-angle steel truss of the B plate is respectively passed through the beam end sealing plate and the channel steel connecting plate perpendicular to the exposed channel steel on the three-way column base node 13 of the C plate The beam end sealing plates are connected by bolts; the single-angle steel truss long main girder 16 of the B plate and the single-angle steel truss long main girder 16 node plate of the C plate are spliced by bolts at intervals of a fixed distance, so that the two Single girders are connected to become double girders; then bolts are used to cover the upper and lower sides of the splicing joints; thus the splicing of B and C plates is completed.

所述工业化多高层装配式钢结构框架-中心支撑体系,其装配式桁架板在柱座节点处上下分别与装配式法兰柱通过螺栓相连接,形成框架结构;所述中心支撑构件由斜撑23和悬臂杆组成,悬臂杆在工厂通过焊接连接于钢框架结构的柱底、顶部或者通过焊接和螺栓连接于钢框架结构桁架梁21上下弦杆处,斜撑23和每层楼上端和下端的悬臂杆在施工现场通过盖板用螺栓相连接,形成框架-中心支撑结构;斜撑截面形式为H型钢,或者使用工字型钢、双槽钢组合截面、双角钢组合截面;所述斜撑为普通高强度钢板带,或者使用防屈曲耗能支撑或耗能阻尼器支撑。The industrialized multi-high-rise assembled steel structure frame-central support system, the assembled truss plates are respectively connected with the assembled flange columns by bolts at the column base nodes to form a frame structure; the central support member is composed of diagonal braces 23 and cantilever rods, the cantilever rods are connected to the bottom and top of the steel frame structure by welding in the factory, or connected to the upper and lower chords of the truss beam 21 of the steel frame structure by welding and bolts, and the diagonal braces 23 and the upper and lower ends of each floor The cantilever rods are connected by bolts through the cover plate at the construction site to form a frame-central support structure; the cross-section of the diagonal brace is H-shaped steel, or I-shaped steel, double-channel steel composite cross-section, double-angle steel composite cross-section; the diagonal brace Ordinary high-strength steel strips, or anti-buckling energy-dissipating supports or energy-dissipating dampers.

所述工业化多高层装配式钢结构框架-中心支撑体系中,所涉及的梁是由上下弦杆、腹杆2和节点板3拼接组成的桁架梁,其中上下弦杆使用角钢,或者使用槽型钢,或者使用方钢管,腹杆2使用角钢,腹杆与弦杆成30度-60度的角度;且分为单梁和双梁,单梁每隔一段固定距离设置连接孔,便于在板与板的拼接时用螺栓将两片单梁拼接成为双梁,对于双梁,腹杆2、上下弦杆和节点板3的连接使用螺栓连接或者使用焊接,均在工厂加工完成;In the industrialized multi-story fabricated steel structure frame-central support system, the beam involved is a truss beam composed of upper and lower chords, web members 2 and gusset plates 3 spliced together, wherein the upper and lower chords use angle steel, or use channel steel , or use square steel pipes, the web 2 uses angle steel, and the web and chord form an angle of 30°-60°; and it is divided into single beam and double beam, and the single beam is provided with connection holes at a fixed distance, which is convenient for the connection between the plate and the plate. When splicing, use bolts to splice two single girders into double girders. For double girders, the connection of web 2, upper and lower chords and gusset plate 3 is connected by bolts or welding, which are all processed in the factory;

或者使用由角钢和填板拼接组成的桁架梁,包括上下弦杆、腹杆2和填板4,其中上下弦杆和腹杆2都采用角钢,腹杆与弦杆成30度-60度的角度;且分为单梁和双梁,单梁每隔一段固定距离设置连接孔,便于在板与板的拼接时用螺栓将两片单梁拼接成为双梁,对于双梁,角钢和填板的连接使用螺栓连接或者使用焊接,均在工厂加工完成。Or use a truss beam composed of angle steel and fill plate splicing, including upper and lower chords, web 2 and fill plate 4, where the upper and lower chords and web 2 are made of angle steel, and the angle between the web and the chord is 30-60 degrees It is divided into single beam and double beam, and the single beam is provided with connecting holes at a fixed distance, which is convenient for splicing two single beams into double beams with bolts when splicing plates and plates. For the connection of double beams, angle steel and filling plates Use bolts or use welding, all processed in the factory.

所述工业化多高层装配式钢结构框架-中心支撑体系中,其柱座有三种形式,分别为二向柱座、三向柱座和四向柱座;将法兰板I7在箱型柱8上下处焊接,然后把两片槽钢9焊接于箱型柱8相邻两侧从而形成二向柱座;将法兰板I7在箱型柱8上下处焊接,然后把三片槽钢9焊接于箱型柱8三边从而形成三向柱座;将法兰板I7在箱型柱8上下处焊接,然后把四片槽钢9焊接于箱型柱8四边从而形成四向柱座;其中槽钢9腹板上开有螺栓孔,与梁上端封板用螺栓拼接。In the industrialized multi-high-rise assembled steel structure frame-center support system, its column base has three types, which are two-way column base, three-way column base and four-way column base; The upper and lower parts are welded, and then two pieces of channel steel 9 are welded to the adjacent sides of the box-shaped column 8 to form a two-way column seat; the flange plate I7 is welded at the upper and lower parts of the box-shaped column 8, and then three pieces of channel steel 9 are welded On the three sides of the box-shaped column 8 to form a three-way column seat; weld the flange plate I7 on the top and bottom of the box-shaped column 8, and then weld four pieces of channel steel 9 to the four sides of the box-shaped column 8 to form a four-way column seat; There are bolt holes on the web plate of the channel steel 9, and are spliced with bolts to the upper end sealing plate of the beam.

所述的工业化多高层装配式钢结构框架-中心支撑体系中,其装配式法兰柱由箱型柱8分别和法兰板II10、法兰板III11、法兰板IV12组成,将普通法兰板向两个方向延伸即为法兰板II10,向三个方向延伸即为法兰板III11,向四个方向延伸即为法兰板IV12;根据其法兰板的形状的不同可分为3种形式的法兰柱,分别为双边法兰柱,三边法兰柱和四边法兰柱;将法兰板II10在箱型柱8上下处焊接,从而形成双边法兰柱;将法兰板III11在箱型柱8上下处焊接,从而形成三边法兰柱;将法兰板IV12在箱型柱8上下处焊接,从而形成四边法兰柱;所述三种装配式法兰柱均在工厂制作完成。In the industrial multi-high-rise assembled steel structure frame-central support system, the assembled flange column is composed of box-shaped column 8 and flange plate II10, flange plate III11, and flange plate IV12 respectively, and the ordinary flange The plate extending in two directions is the flange plate II10, extending in three directions is the flange plate III11, and extending in four directions is the flange plate IV12; according to the shape of the flange plate, it can be divided into three types: There are two types of flange columns, which are double-sided flange columns, three-side flange columns and four-side flange columns; the flange plate II10 is welded on the top and bottom of the box-shaped column 8 to form a double-sided flange column; the flange plate III11 is welded at the top and bottom of the box-shaped column 8 to form a three-sided flange column; the flange plate IV12 is welded at the top and bottom of the box-shaped column 8 to form a four-sided flange column; the three assembled flange columns are all in Factory made.

本发明有益效果是,在上述工业化多高层装配式钢结构框架-中心支撑体系中,所采用的梁都是桁架梁,由于梁的腹部空隙较大,便于管线穿过,有效的增加了房间的净高。The beneficial effect of the present invention is that in the above-mentioned industrialized multi-high-rise assembled steel structure frame-central support system, the beams used are all truss beams. Since the gaps in the belly of the beams are relatively large, it is convenient for pipelines to pass through, effectively increasing the space of the room. clear height.

所述工业化多高层装配式钢结构框架-中心支撑体系,完全采用螺栓进行现场装配,取消了传统的现场焊接方式和混凝土浇筑方式,有效的保证了施工质量,完全避免了混凝土浇筑和钢材焊接造成的环境污染,实现现场施工的“无水、无火、无尘”的三无标准,减少了火灾等危害事故的发生。并且抗侧力体系能有效提高结构的侧向刚度,改善结构的变形性能,使结构有更大的安全贮备。本发明在构件拆除时,可以高效的回收利用,减少了建筑垃圾,真正的实现了绿色环保的理念,是一种绿色的,可持续发展的钢结构体系。The industrialized multi-story fabricated steel structure frame-central support system completely adopts bolts for on-site assembly, cancels the traditional on-site welding method and concrete pouring method, effectively guarantees the construction quality, and completely avoids the problems caused by concrete pouring and steel welding. Environmental pollution, to achieve the site construction "no water, no fire, no dust" three standards, reducing the occurrence of fire and other hazardous accidents. And the anti-lateral force system can effectively improve the lateral stiffness of the structure, improve the deformation performance of the structure, and make the structure have a greater safety reserve. When the components are dismantled, the present invention can efficiently recycle, reduce construction waste, truly realize the concept of green environmental protection, and is a green and sustainable steel structure system.

附图说明Description of drawings

图1是本发明的装配式桁架板拼接平面布置图Fig. 1 is the splicing plane layout diagram of the assembled truss panel of the present invention

图2是本发明的装配式桁架板带节点板角钢桁架梁示意图Fig. 2 is a schematic diagram of the assembled truss plate with gusset plate angle steel truss beam of the present invention

图3是本发明的装配式桁架板不带节点板角钢桁架梁示意图Fig. 3 is a schematic diagram of the assembled truss plate of the present invention without a gusset plate angle steel truss beam

图4是本发明的装配式桁架板带节点板槽钢桁架梁示意图Fig. 4 is a schematic diagram of the channel steel truss girder of the assembled truss plate with gusset plate of the present invention

图5是本发明的装配式桁架板带节点板方钢管桁架梁示意图Fig. 5 is a schematic diagram of a square steel pipe truss beam with assembled truss plates of the present invention with gusset plates

图6是本发明的装配式桁架板二向柱座示意图Fig. 6 is a schematic diagram of the two-way column seat of the assembled truss plate of the present invention

图7是本发明的装配式桁架板三向柱座示意图Fig. 7 is a schematic diagram of the three-way column seat of the assembled truss plate of the present invention

图8是本发明的装配式桁架板四向柱座示意图Fig. 8 is a schematic diagram of the four-way column seat of the assembled truss plate of the present invention

图9是本发明的装配式法兰柱示意图Fig. 9 is a schematic diagram of the assembled flange column of the present invention

图10是本发明的装配式桁架板A单元分解图Fig. 10 is an exploded view of unit A of the assembled truss plate of the present invention

图11是本发明的装配式桁架板A单元拼装完成图Fig. 11 is an assembled drawing of unit A of the fabricated truss plate of the present invention

图12是本发明的装配式桁架板B单元分解图Fig. 12 is an exploded view of unit B of the assembled truss plate of the present invention

图13是本发明的装配式桁架板B单元拼装完成图Fig. 13 is an assembled drawing of unit B of the prefabricated truss plate of the present invention

图14是本发明的装配式桁架板C单元分解图Fig. 14 is an exploded view of unit C of the assembled truss plate of the present invention

图15是本发明的装配式桁架板C单元拼装完成图Fig. 15 is an assembled drawing of unit C of the prefabricated truss plate of the present invention

图16是本发明的装配式桁架板A、B和C单元拼装完成图Fig. 16 is an assembled drawing of the fabricated truss panels A, B and C units of the present invention

图17是本发明的装配式桁架板节点1分解图Fig. 17 is an exploded view of the assembled truss plate node 1 of the present invention

图18是本发明的装配式桁架板节点2分解图Fig. 18 is an exploded view of the assembled truss plate node 2 of the present invention

图19是本发明的装配式桁架板节点3分解图Fig. 19 is an exploded view of the assembled truss plate node 3 of the present invention

图20是本发明的装配式桁架板节点4分解图Fig. 20 is an exploded view of the assembled truss plate node 4 of the present invention

图21是本发明的装配式桁架板节点5分解图Fig. 21 is an exploded view of the assembled truss plate node 5 of the present invention

图22是本发明的装配式桁架板节点6分解图Fig. 22 is an exploded view of the assembled truss plate node 6 of the present invention

图23是本发明的装配式桁架板节点7分解图Fig. 23 is an exploded view of the assembled truss plate node 7 of the present invention

图24是本发明的装配式桁架板节点8分解图Fig. 24 is an exploded view of the assembled truss plate node 8 of the present invention

图25是本发明的装配式桁架板节点9分解图Fig. 25 is an exploded view of the assembled truss plate node 9 of the present invention

图26是本发明的装配式桁架板节点10分解图Fig. 26 is an exploded view of the assembled truss plate node 10 of the present invention

图27是本发明的装配式桁架板节点11分解图Fig. 27 is an exploded view of the assembled truss plate node 11 of the present invention

图28是本发明的装配式桁架板节点12分解图Fig. 28 is an exploded view of the assembled truss plate node 12 of the present invention

图29是本发明的双边法兰柱与节点的连接形式分解图Fig. 29 is an exploded view of the connection form between the bilateral flange column and the node of the present invention

图30是本发明的三边法兰柱与节点的连接形式分解图Fig. 30 is an exploded view of the connection form between the three-sided flange column and the node of the present invention

图31是本发明的四边法兰柱与节点的连接形式分解图Figure 31 is an exploded view of the connection form between the four-sided flange column and the node of the present invention

图32是本发明的工业化多高层装配式钢结构框架-中心人字形支撑体系示意图Fig. 32 is a schematic diagram of the industrialized multi-high-rise assembled steel frame-center herringbone support system of the present invention

图33是本发明的工业化多高层装配式钢结构框架-中心单斜杆式支撑体系示意图Fig. 33 is a schematic diagram of the industrialized multi-high-rise assembled steel structure frame-central single-slope support system of the present invention

图34是本发明的工业化多高层装配式钢结构框架-中心V字形支撑体系示意图Fig. 34 is a schematic diagram of the industrialized multi-high-rise assembled steel frame-center V-shaped support system of the present invention

图35是本发明的工业化多高层装配式钢结构框架-中心十字交叉形支撑体系示意图Fig. 35 is a schematic diagram of the industrialized multi-high-rise assembled steel structure frame-central cross-shaped support system of the present invention

图36是本发明的工业化多高层装配式钢结构框架-中心双向单斜杆式支撑体系示意图Fig. 36 is a schematic diagram of the industrialized multi-high-rise assembled steel structure frame-central two-way single-slope support system of the present invention

图37是本发明的工业化多高层装配式钢结构框架-中心支撑体系节点13详图Fig. 37 is a detailed diagram of node 13 of the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention

图38是本发明的工业化多高层装配式钢结构框架-中心支撑体系节点14详图Fig. 38 is a detailed diagram of node 14 of the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention

图39是本发明的工业化多高层装配式钢结构框架-中心支撑体系节点15详图Fig. 39 is a detailed diagram of node 15 of the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention

图40是本发明的工业化多高层装配式钢结构框架-中心支撑体系节点16详图Fig. 40 is a detailed diagram of node 16 of the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention

图中1.上下弦杆I,2.腹杆,3.节点板,4.填板,5.上下弦杆II,6.上下弦杆III,,7.法兰板I,8.箱型柱,9.槽钢,10.法兰板II,11.法兰板III,12.法兰板IV,13.柱座,14.双角钢桁架长主梁,15.双角钢桁架主梁,16.单角钢桁架长主梁,17.单角钢桁架次梁,18.连接板I,19.楼板,20.连接板II,21.桁架梁,22.装配式法兰柱,23.斜撑,24.悬臂杆I,25.悬臂杆II,26.伸臂杆In the figure 1. Upper and lower chord I, 2. Web member, 3. Gusset plate, 4. Filler plate, 5. Upper and lower chord II, 6. Upper and lower chord III, 7. Flange plate I, 8. Box type Column, 9. Channel steel, 10. Flange plate II, 11. Flange plate III, 12. Flange plate IV, 13. Column seat, 14. Long main beam of double-angle steel truss, 15. Main beam of double-angle steel truss, 16. Long main beam of single-angle steel truss, 17. Secondary beam of single-angle steel truss, 18. Connection plate I, 19. Floor slab, 20. Connection plate II, 21. Truss beam, 22. Prefabricated flange column, 23. Diagonal brace , 24. Cantilever I, 25. Cantilever II, 26. Outrigger

具体实施方式Detailed ways

下面结合附图对本发明进行详细说明:The present invention is described in detail below in conjunction with accompanying drawing:

如附图1所示,本发明的装配式桁架板的拼接位置设置在主梁的中部,此部位剪力和弯矩相对较小,从结构力学的角度讲,拼接位置的设置合理。As shown in Figure 1, the splicing position of the assembled truss plate of the present invention is set in the middle of the main girder, where the shear force and bending moment are relatively small. From the perspective of structural mechanics, the setting of the splicing position is reasonable.

如附图2所示,本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,所涉及的梁是由角钢和节点板拼接组成的桁架梁,包括上下弦杆I1、腹杆2和节点板3,其中上下弦杆I1和腹杆2都采用角钢,且分为单角钢梁和双角钢梁,单角钢梁每隔一段固定距离设置连接孔,便于在板与板的拼接时用螺栓将两片单角钢梁拼接成为双角钢梁,对于双角钢梁,角钢和节点板的连接使用螺栓连接或者使用焊接,均在工厂加工完成;As shown in accompanying drawing 2, in the industrialized multi-story assembled steel frame-central support system of the present invention, the beams involved are truss beams composed of angle steel and gusset plates, including upper and lower chords I1, webs 2 and gusset plate 3, in which the upper and lower chords I1 and web 2 are made of angle steel, and are divided into single-angle steel beams and double-angle steel beams. The single-angle steel beams are provided with connection holes at regular intervals to facilitate splicing between plates When splicing two single-angle steel beams with bolts to form a double-angle steel beam, for the double-angle steel beam, the connection between the angle steel and the gusset plate is connected by bolts or welding, which are all processed in the factory;

如附图3所示,或者使用由角钢和填板拼接组成的桁架梁,包括上下弦杆I1、腹杆2和填板4,其中上下弦杆I1和腹杆2都采用角钢,且分为单角钢梁和双角钢梁,单角钢梁每隔一段固定距离设置连接孔,便于在板与板的拼接时用螺栓将两片单角钢梁拼接成为双角钢梁,对于双角钢梁,角钢和填板的连接使用螺栓连接或者使用焊接,均在工厂加工完成;As shown in Figure 3, or use a truss beam composed of angle steel and filler plate, including upper and lower chords I1, web members 2 and filler plates 4, where both upper and lower chord I1 and web members 2 use angle steel, and are divided into Single-angle steel beams and double-angle steel beams, single-angle steel beams are provided with connecting holes at a fixed distance, which is convenient for splicing two single-angle steel beams into double-angle steel beams with bolts when splicing plates and plates. For double-angle steel beams , The connection between the angle steel and the filler plate is connected by bolts or welding, which are all processed in the factory;

如附图4所示,或者使用由角钢、槽钢和节点板拼接组成的桁架梁,包括上下弦杆II5、腹杆2和节点板3,其中上下弦杆II5采用槽钢,腹杆2采用角钢,且分为单槽钢梁和双槽钢梁,单槽钢梁每隔一段固定距离设置连接孔,便于在板与板的拼接时用螺栓将两片单槽钢梁拼接成为双槽钢梁,对于双槽钢梁,角钢、槽钢和节点板的连接使用螺栓连接,或者使用焊接,均在工厂加工完成;As shown in Figure 4, or use a truss beam spliced by angle steel, channel steel and gusset plate, including upper and lower chords II5, web 2 and gusset plate 3, wherein the upper and lower chord II5 is made of channel steel, and the web 2 is made of Angle steel, and divided into single-channel steel beams and double-channel steel beams. The single-channel steel beams are provided with connecting holes at a fixed distance, which is convenient for splicing two single-channel steel beams into double-channel steel beams with bolts when splicing plates. For double-channel steel beams, the connection of angle steel, channel steel and gusset plate is connected by bolts, or by welding, all of which are processed in the factory;

如附图5所示,或者使用由角钢、方钢管和节点板拼接组成的桁架梁,包括上下弦杆III6、腹杆2和节点板3,其中上下弦杆III6采用方钢管,腹杆2采用角钢,且分为单方钢管梁和双方钢管梁,单方钢管梁每隔一段固定距离设置连接孔,便于在板与板的拼接时用螺栓将两片单方钢管梁拼接成为双方钢管梁,对于双方钢管梁,角钢、方钢管和节点板的连接使用螺栓连接,或者使用焊接,均在工厂加工完成;As shown in Figure 5, or use a truss beam spliced by angle steel, square steel pipe and gusset plate, including upper and lower chords III6, web 2 and gusset plate 3, wherein the upper and lower chords III6 use square steel pipes, and web 2 uses Angle steel, and divided into single steel pipe beams and double steel pipe beams. The single steel pipe beams are provided with connecting holes at a fixed distance, which is convenient for splicing two single steel pipe beams into two double steel pipe beams with bolts when splicing plates. Beams, angle steels, square steel pipes and gusset plates are connected by bolts or welded, all of which are processed in the factory;

对于以上四种梁截面形式,单梁通过螺栓拼接成双梁的拼接方式具有良好的刚度和稳定性。由于桁架梁的腹部空隙较大,便于管线穿过,有效的增加了房间的净高。For the above four beam cross-section forms, the splicing method of splicing single beams into double beams through bolts has good rigidity and stability. Since the belly space of the truss beam is large, it is convenient for pipelines to pass through, effectively increasing the net height of the room.

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图6-8所示,其柱座有三种形式,分别为二向柱座、三向柱座和四向柱座;将法兰板I7在箱型柱8上下处焊接,然后把两片槽钢9焊接于箱型柱8相邻两侧从而形成二向柱座;将法兰板I7在箱型柱8上下处焊接,然后把三片槽钢9焊接于箱型柱8三边从而形成三向柱座;将法兰板I7在箱型柱8上下处焊接,然后把四片槽钢9焊接于箱型柱8四边从而形成四向柱座;其中槽钢9腹板上开有螺栓孔,与梁上端封板用螺栓拼接。In the industrial multi-high-rise assembled steel structure frame-central support system of the present invention, as shown in Figures 6-8, there are three types of column bases, namely two-way column bases, three-way column bases and four-way column bases. Seat; weld the flange plate I7 on the top and bottom of the box-shaped column 8, and then weld two pieces of channel steel 9 on the adjacent sides of the box-shaped column 8 to form a two-way column seat; place the flange plate I7 on the box-shaped column 8 The upper and lower parts are welded, and then three pieces of channel steel 9 are welded to the three sides of the box-shaped column 8 to form a three-way column seat; the flange plate I7 is welded at the upper and lower places of the box-shaped column 8, and then four pieces of channel steel 9 are welded to the box-shaped column 8. The four sides of the shaped column 8 form a four-way column base; wherein the channel steel 9 has bolt holes on the web plate, which are spliced with the upper end sealing plate of the beam with bolts.

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图9所示,装配式法兰柱由箱型柱8分别和法兰板II10、法兰板III11、法兰板IV12组成,将普通法兰板向两个方向延伸即为法兰板II10,向三个方向延伸即为法兰板III11,向四个方向延伸即为法兰板IV12;根据其法兰板的形状的不同可分为3种形式的法兰柱,分别为双边法兰柱,三边法兰柱和四边法兰柱;将法兰板II10在箱型柱8上下处焊接,从而形成双边法兰柱;将法兰板III11在箱型柱8上下处焊接,从而形成三边法兰柱;将法兰板IV12在箱型柱8上下处焊接,从而形成四边法兰柱;所述三种装配式法兰柱均在工厂制作完成。In the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention, as shown in Figure 9, the assembled flange column is composed of box-shaped column 8 and flange plate II10, flange plate III11, flange The flange plate IV12 is composed of the ordinary flange plate extending in two directions is the flange plate II10, extending in three directions is the flange plate III11, and extending in four directions is the flange plate IV12; according to the flange plate The different shapes can be divided into three types of flange columns, which are double-sided flange columns, three-side flange columns and four-side flange columns; the flange plate II10 is welded on the top and bottom of the box-shaped column 8 to form a double-sided flange column. Flange column; weld flange plate III11 on the upper and lower positions of box-shaped column 8 to form a three-sided flange column; weld flange plate IV12 on the upper and lower positions of box-shaped column 8 to form a four-sided flange column; All kinds of assembled flange columns are completed in the factory.

在工业化多高层装配式钢结构框架-中心支撑体系中,如附图10-11所示,所述A板包括柱座节点13、双角钢桁架长主梁14、双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17、连接板I18、连接板II20和楼板19,其特征在于:双角钢桁架主梁15和双角钢桁架长主梁14相互垂直,且均通过梁端封板,与双向柱座节点13上的槽钢连板采用螺栓相连,并且连接处的上下端面处分别焊接有一连接板II20,连接板II20的两端分别连接在双角钢桁架主梁15和双角钢桁架长主梁14的上下弦杆上;双角钢桁架主梁15的另一端连接有与双角钢桁架长主梁14水平的单角钢桁架长主梁16,双角钢桁架主梁15所述端部与单角钢桁架长主梁16端部的上下弦杆和梁端封板分别焊接相连,且双角钢桁架主梁15与单角钢桁架长主梁16再通过上下两个断面的连接板I18相连,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板I18焊接相连;单角钢桁架次梁17连接在所述的双角钢桁架长主梁14和单角钢桁架长主梁16的另一端,与双角钢桁架主梁15水平相对,单角钢桁架次梁17一端端部与单角钢桁架长主梁16另一端部的上下弦杆和梁端封板分别焊接相连,且单角钢桁架次梁17与单角钢桁架长主梁16之间再通过连接在上下弦杆处的两个连接板I18连接;单角钢桁架次梁17另一端端部与双角钢桁架长主梁14之间通过连接在上下弦杆处的两个连接板II20连接;所述的双角钢桁架长主梁14、双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17构成一长方形框架;所述的两个长方形框架进行连接构成一个拼接的底部框架;两个长方形框架中的单角钢桁架次梁17对齐并通过螺栓进行连接,并且两根双角钢桁架长主梁14位于一条直线上,两根单角钢桁架长主梁16位于一条直线上;两根双角钢桁架长主梁14的上下端均通过梁端封板与三向柱座节点13两个相对方向上的槽钢连板采用螺栓相连,所述的两根单角钢桁架次梁17连接在三向柱座节点13上的与所述两个方向垂直的槽钢连板上;所述底部框架通过桁架梁上弦杆上部锚固件与两块楼板19相连;所述A板的所有构件均在工厂中预制和组装;In the industrial multi-high-rise assembled steel frame-central support system, as shown in Figures 10-11, the A-plate includes column base nodes 13, double-angle steel truss long main girders 14, double-angle steel truss main girders 15, single Angle steel truss long main beam 16, single angle steel truss secondary beam 17, connection plate I18, connection plate II20 and floor slab 19, characterized in that: double angle steel truss main beam 15 and double angle steel truss long main beam 14 are perpendicular to each other, and all pass through the beam The end sealing plate is connected with the channel steel connecting plate on the two-way column base node 13 by bolts, and a connecting plate II20 is welded at the upper and lower end faces of the joint, and the two ends of the connecting plate II20 are respectively connected to the double angle steel truss main beam 15 and On the upper and lower chords of the double-angle steel truss long main beam 14; the other end of the double-angle steel truss main beam 15 is connected with a single-angle steel truss long main beam 16 horizontal to the double-angle steel truss long main beam 14. The ends are welded to the upper and lower chords of the long main girder 16 of the single-angle steel truss and the beam end sealing plate respectively, and the main girder 15 of the double-angle steel truss and the long main girder 16 of the single-angle steel truss pass through the connecting plate I18 of the upper and lower sections Connected, and the upper and lower chords of the double-angle steel truss main girder 15 and the single-angle steel truss long main beam 16 are welded and connected with two connecting plates I18; The other end of the long main beam 16 of the single-angle steel truss is horizontally opposite to the main beam 15 of the double-angle steel truss, and the upper and lower chords and beam end sealing plates at one end of the secondary beam 17 of the single-angle steel truss and the other end of the long main beam 16 of the single-angle steel truss They are respectively connected by welding, and the single-angle steel truss secondary beam 17 and the single-angle steel truss long main beam 16 are connected through two connecting plates I18 connected at the upper and lower chords; the other end of the single-angle steel truss secondary beam 17 is connected to the double-angle steel The long main girders 14 of the truss are connected by two connecting plates II20 connected at the upper and lower chords; The truss secondary beam 17 forms a rectangular frame; the two rectangular frames are connected to form a spliced bottom frame; the single-angle steel truss secondary beams 17 in the two rectangular frames are aligned and connected by bolts, and the two double-angle steel trusses The long main girder 14 is located on a straight line, and the two long main girders 16 of single-angle steel trusses are located on a straight line; The channel steel connecting plates in the opposite directions are connected by bolts, and the two single-angle steel truss secondary beams 17 are connected to the channel steel connecting plates perpendicular to the two directions on the three-way column base node 13; The frame is connected to the two floor slabs 19 through the upper anchors of the truss girder top chord; all components of said A slab are prefabricated and assembled in the factory;

在工业化多高层装配式钢结构框架-中心支撑体系中,如附图12-13所示,所述B板包括双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17、连接板I18、连接板II20和楼板19,双角钢桁架主梁15和单角钢桁架长主梁16相互垂直,双角钢桁架主梁15端部与单角钢桁架长主梁16端部的上下弦杆和梁端封板分别焊接相连,且再通过上下两个断面的连接板I18相连,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板I18焊接相连;双角钢桁架主梁15的另一端通过上下两个断面的连接板II20连接有与所述单角钢桁架长主梁16水平的另一根单角钢桁架长主梁16,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板II20焊接相连;单角钢桁架次梁17连接在所述的两根双单角钢桁架长主梁16的另一端,与双角钢桁架主梁15水平相对,单角钢桁架次梁17与两根单角钢桁架长主梁16的连接形式和所述的双角钢桁架主梁15与两根单角钢桁架长主梁16的连接形式相同;所述的双角钢桁架主梁15、两根单角钢桁架长主梁16、单角钢桁架次梁17构成一长方形框架;所述的两个长方形框架进行连接构成一个拼接的底部框架;两个长方形框架中的单角钢桁架次梁17对齐并通过螺栓进行连接,并且一个长方形框架水平相对的两根单角钢桁架长主梁16和另一个长方向框架水平相对的两根单角钢桁架长主梁16分别位于一条直线上;所述底部框架通过桁架梁上弦杆上部锚固件与两块楼板19相连;所述B板的所有构件均在工厂中预制和组装;In the industrialized multi-story fabricated steel frame-central support system, as shown in Figures 12-13, the B-plate includes a double-angle steel truss main beam 15, a single-angle steel truss long main beam 16, and a single-angle steel truss secondary beam 17 , connecting plate I18, connecting plate II20 and floor slab 19, double angle steel truss main girder 15 and single angle steel truss long main girder 16 are perpendicular to each other, double angle steel truss main girder 15 ends and single angle steel truss long main girder 16 end upper and lower chords Rods and beam end sealing plates are welded and connected respectively, and then connected through the connecting plates I18 of the upper and lower sections, and the upper and lower chords of the double-angle steel truss main girder 15 and the single-angle steel truss long main girder 16 are welded to the two connecting plates I18 Connected; the other end of the double-angle steel truss main beam 15 is connected with another single-angle steel truss long main beam 16 horizontal to the single-angle steel truss long main beam 16 through the connecting plate II20 of the upper and lower sections, and the double-angle steel truss main beam The upper and lower chords of the beam 15 and the long main girder 16 of the single-angle steel truss are connected by welding with two connecting plates II20; The double-angle steel truss main beam 15 is horizontally opposite, the connection form of the single-angle steel truss secondary beam 17 and the two single-angle steel truss long main beams 16 and the connection between the double-angle steel truss main beam 15 and the two single-angle steel truss long main beams 16 The forms are the same; the double-angle steel truss main beam 15, the two single-angle steel truss long main beams 16, and the single-angle steel truss secondary beam 17 form a rectangular frame; the two rectangular frames are connected to form a spliced bottom frame; The single-angle steel truss secondary beams 17 in the two rectangular frames are aligned and connected by bolts, and the two single-angle steel truss long main beams 16 of one rectangular frame horizontally opposite to each other and the other long direction frame horizontally opposite two single-angle steel truss long The main beams 16 are respectively located on a straight line; the bottom frame is connected to the two floor slabs 19 through the upper anchors of the upper chord of the truss beam; all components of the B-slab are prefabricated and assembled in the factory;

在工业化多高层装配式钢结构框架-中心支撑体系中,如附图14-15所示,所述C板包括柱座节点13、双角钢桁架主梁15、单角钢桁架长主梁16、单角钢桁架次梁17、连接板I18、连接板II20和楼板19,双角钢桁架主梁15和单角钢桁架长主梁16相互垂直,且均通过梁端封板,与三向柱座节点13上的两个相邻的槽钢连板采用螺栓相连,并且连接处的上下端面处分别焊接有一连接板II20,连接板II20的两端分别连接在双角钢桁架主梁15和单角钢桁架长主梁16的上下弦杆上;双角钢桁架主梁15的另一端通过焊接连接有与单角钢桁架长主梁16水平的另一根单角钢桁架长主梁16,双角钢桁架主梁15端部与这根单角钢桁架长主梁16端部的上下弦杆和梁端封板分别焊接相连,且双角钢桁架主梁15与单角钢桁架长主梁16再通过上下两个断面的连接板I18相连,并且双角钢桁架主梁15与单角钢桁架长主梁16的上下弦杆均与两块连接板I18焊接相连;单角钢桁架次梁17连接在所述的两根单角钢桁架长主梁16的另一端,与双角钢桁架主梁15水平相对,单角钢桁架次梁17一端端部与单角钢桁架长主梁16另一端部的上下弦杆和梁端封板分别焊接相连,且单角钢桁架次梁17与单角钢桁架长主梁16之间再通过连接在上下弦杆处的两个连接板I18连接;单角钢桁架次梁17另一端端部与单角钢桁架长主梁16之间通过连接在上下弦杆处的两个连接板II20连接;所述的双角钢桁架主梁15、两根单角钢桁架长主梁16、单角钢桁架次梁17构成一长方形框架;所述的两个长方形框架进行连接构成一个拼接的底部框架;两个长方形框架中的单角钢桁架次梁17对齐并通过螺栓进行连接,并且一个长方形框架水平相对的两根单角钢桁架长主梁16和另一个长方向框架水平相对的两根单角钢桁架长主梁16分别位于一条直线上;两根单角钢桁架长主梁16的上下端均通过梁端封板与四向柱座节点13两个相对方向上的槽钢连板采用螺栓相连,所述的两根单角钢桁架次梁17连接在三向柱座节点13上的与所述两个方向垂直的槽钢连板上;所述底部框架通过桁架梁上弦杆上部锚固件与两块楼板19相连;所述C板的所有构件均在工厂中预制和组装;In the industrial multi-high-rise assembled steel frame-central support system, as shown in Figures 14-15, the C plate includes column base nodes 13, double-angle steel truss main beams 15, single-angle steel truss long main beams 16, single Angle steel truss secondary beam 17, connection plate I18, connection plate II20 and floor slab 19, double angle steel truss main beam 15 and single angle steel truss long main beam 16 are perpendicular to each other, and all pass through the beam end sealing plate, and connect with the three-way column base node 13 The two adjacent channel steel connecting plates are connected by bolts, and a connecting plate II20 is welded at the upper and lower ends of the joint, and the two ends of the connecting plate II20 are respectively connected to the main girder 15 of the double-angle steel truss and the long main girder of the single-angle steel truss On the upper and lower chords of 16; the other end of double-angle steel truss main beam 15 is connected with another single-angle steel truss long main beam 16 horizontal with single-angle steel truss long main beam 16 by welding, double-angle steel truss main beam 15 ends and The upper and lower chords at the ends of the long main girder 16 of the single-angle steel truss are welded and connected respectively, and the main girder 15 of the double-angle steel truss is connected to the long main beam 16 of the single-angle steel truss through connecting plates I18 of the upper and lower sections. , and the upper and lower chords of the double-angle steel truss main beam 15 and the single-angle steel truss long main beam 16 are welded and connected with two connecting plates I18; the single-angle steel truss secondary beam 17 is connected to the two single-angle steel truss long main beams 16 The other end of the double-angle steel truss main beam 15 is horizontally opposite, and one end of the single-angle steel truss secondary beam 17 is welded to the upper and lower chords and beam end sealing plates of the other end of the single-angle steel truss long main beam 16 respectively, and the single-angle steel truss The truss secondary beam 17 and the single-angle steel truss long main beam 16 are connected through two connecting plates I18 connected at the upper and lower chords; the other end of the single-angle steel truss secondary beam 17 and the single-angle steel truss long main beam 16 Connected by two connection plates II20 connected at the upper and lower chord places; the double-angle steel truss main girder 15, two single-angle steel truss long main girders 16, and single-angle steel truss secondary beams 17 form a rectangular frame; Two rectangular frames are connected to form a spliced bottom frame; the single-angle steel truss secondary beams 17 in the two rectangular frames are aligned and connected by bolts, and the two single-angle steel truss long main beams 16 of one rectangular frame are horizontally opposite to the other The two long main girders 16 of the single-angle steel truss horizontally facing each other in the long direction frame are respectively located on a straight line; the upper and lower ends of the two long main girders 16 of the single-angle steel truss pass through the two opposite directions The upper channel steel connecting plates are connected by bolts, and the two single-angle steel truss secondary beams 17 are connected to the channel steel connecting plates perpendicular to the two directions on the three-way column base node 13; the bottom frame passes through The upper anchors of the upper chord of the truss beam are connected to the two floor slabs 19; all components of the C slab are prefabricated and assembled in the factory;

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图16所示,所述A板和B板,将A板和B板水平对齐,将A板的双角钢桁架主梁15的没有连接柱座的一端和B板的双角钢桁架主梁15有连接板I18的一端通过梁端封板用螺栓进行拼接;将A板的单角钢桁架次梁17的没有连接柱座的一端和B板的单角钢桁架次梁17的有连接板I18的一端通过螺栓将梁端封板进行拼接;在A板的单角钢桁架长主梁16和B板的单角钢桁架长主梁16节点板处通过螺栓将单梁每隔一段固定距离进行拼接,使得两片单梁连接成为双梁;然后在拼接节点上下两面用螺栓加盖板;从而完成A板和B板的拼接;In the industrialized multi-story assembled steel structure frame-central support system of the present invention, as shown in Figure 16, the A board and the B board are horizontally aligned with the A board and the B board, and the double-angle steel truss of the A board One end of the main beam 15 without a connecting column seat and the double-angle steel truss main beam 15 of the B plate with the connecting plate I18 are spliced with bolts through the beam end sealing plate; One end of the seat and the single-angle steel truss secondary beam 17 of the B plate have an end of the connecting plate I18 to splice the beam end sealing plate by bolts; The joint plate of the beam 16 is spliced with bolts at intervals of a fixed distance, so that two single beams are connected to form a double beam; then bolts are added to the upper and lower sides of the spliced node to complete the splicing of the A plate and the B plate;

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图16所示,所述B板和C板,将B板和C板水平对齐,将B板的双角钢桁架主梁15的有连接板II20的一端和C板的三向柱座节点13外露槽钢连板通过梁端封板采用螺栓相连;将B板的单角钢桁架次梁17的有连接板II20的一端和C板的四向柱座节点13外露槽钢连板通过梁端封板采用螺栓相连;将B板的两根单角钢桁架长主梁16的上下端均通过梁端封板与四向柱座节点13两个相对方向上的槽钢连板采用螺栓相连,将B板的单角钢桁架长主梁16的另一端分别通过梁端封板与C板的三向柱座节点13上与所述外露槽钢垂直的槽钢连板通过梁端封板采用螺栓相连;在B板的单角钢桁架长主梁16和C板的单角钢桁架长主梁16节点板处通过螺栓将单梁每隔一段固定距离进行拼接,使得两片单梁连接成为双梁;然后在拼接节点上下两面用螺栓加盖板;从而完成B板和C板的拼接。In the industrialized multi-story assembled steel structure frame-central support system of the present invention, as shown in Figure 16, the B board and the C board are horizontally aligned with the B board and the C board, and the double angle steel truss of the B board One end of the main beam 15 with the connection plate II20 and the three-way column base node 13 of the C plate are connected with the exposed channel steel connection plate through the beam end sealing plate with bolts; One end and the four-way column base node 13 of plate C are connected with the exposed channel steel connecting plate through the beam end sealing plate with bolts; The channel steel connecting plates in the two opposite directions of the column base node 13 are connected by bolts, and the other end of the long main girder 16 of the single-angle steel truss of the B plate is respectively connected to the three-way column base node 13 of the C plate through the beam end sealing plate. The vertical channel steel connecting plates of the exposed channel steel are connected by bolts through the beam end seal plate; Splicing is carried out at regular intervals so that two single girders are connected into double girders; then bolts are used to cover the upper and lower sides of the splicing joints; thus the splicing of B and C plates is completed.

综上所述,A、B、C拼接所成的整体楼板在拼接处有节点9、节点10、节点11和节点12四种不同的节点形式,其中节点9和节点10处可在拼接节点上下覆盖板以加大节点刚度。To sum up, the overall floor slab formed by splicing A, B, and C has four different node forms at the splicing place: node 9, node 10, node 11, and node 12, of which node 9 and node 10 can be located at the splicing node. Overlay plates to increase joint stiffness.

在上述工业化多高层装配式钢结构框架-中心支撑体系中,如附图17-24所示,分别作出了装配式桁架板节点1-8的分解详图;如附图25-28所示,分别作出了装配式桁架板节点9-12的分解详图;附图29-31为三种不同的装配式法兰柱与其对应节点的连接形式分解详图;In the above-mentioned industrialized multi-story fabricated steel structure frame-central support system, as shown in accompanying drawings 17-24, the exploded detailed diagrams of fabricated truss plate nodes 1-8 are made respectively; as shown in accompanying drawings 25-28, The exploded detailed diagrams of the assembled truss plate nodes 9-12 are made respectively; the attached drawings 29-31 are the exploded detailed diagrams of the connection forms of three different assembled flange columns and their corresponding nodes;

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图32所示,其人字形抗侧力构件由斜撑23、悬臂杆I24和悬臂杆II25组成;悬臂杆I24通过焊接连接于柱底部,斜撑23和悬臂杆I24通过盖板用螺栓连接;悬臂杆II25通过梁上竖板用焊接连接于桁架梁21上,斜撑23和悬臂杆II25通过盖板用螺栓连接;斜撑截面形式为H型钢,或者使用工字型钢、双槽钢组合截面、双角钢组合截面;所述斜撑为普通高强度钢板带,或者使用防屈曲耗能支撑或耗能阻尼器支撑;本实施方式以普通高强度H型钢板带为例说明。In the industrialized multi-story assembled steel structure frame-central support system of the present invention, as shown in accompanying drawing 32, its herringbone anti-lateral force member is made up of diagonal brace 23, cantilever rod I24 and cantilever rod II25; cantilever rod I24 Connected to the bottom of the column by welding, the diagonal brace 23 and the cantilever rod I24 are connected with bolts through the cover plate; the cantilever rod II25 is connected to the truss beam 21 by welding through the vertical plate on the beam, and the diagonal brace 23 and the cantilever rod II25 are bolted through the cover plate Connection; the cross-section of the diagonal brace is H-shaped steel, or I-shaped steel, double-channel steel composite cross-section, double-angle steel composite cross-section; the diagonal brace is an ordinary high-strength steel strip, or buckling-resistant energy-dissipating support or energy-dissipating damper is used Support; this embodiment is described by taking an ordinary high-strength H-shaped steel strip as an example.

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图33所示,其单斜杆式抗侧力构件由斜撑23和悬臂杆I24组成;悬臂杆I24通过焊接连接于柱底部和顶部,斜撑23和悬臂杆I24通过盖板用螺栓连接;斜撑截面形式为H型钢,或者使用工字型钢、双槽钢组合截面、双角钢组合截面;所述斜撑为普通高强度钢板带,或者使用防屈曲耗能支撑或耗能阻尼器支撑;本实施方式以普通高强度H型钢板带为例说明。In the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention, as shown in accompanying drawing 33, its single diagonal bar type anti-lateral force member is made up of diagonal brace 23 and cantilever bar I24; Cantilever bar I24 is welded Connected to the bottom and top of the column, the diagonal brace 23 and the cantilever rod I24 are connected by bolts through the cover plate; the cross section of the diagonal brace is H-shaped steel, or I-shaped steel, double channel steel composite cross section, double angle steel composite cross section; the diagonal brace It is an ordinary high-strength steel strip, or it is supported by an anti-buckling energy-dissipating support or an energy-dissipating damper; this embodiment is described by taking an ordinary high-strength H-shaped steel strip as an example.

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图34所示,其V字形抗侧力构件由斜撑23、悬臂杆I24和悬臂杆II25组成;悬臂杆I24通过焊接连接于柱底部和顶部,斜撑23和悬臂杆I24通过盖板用螺栓连接;悬臂杆II25焊接于桁架梁21上,斜撑23和悬臂杆II25通过盖板用螺栓连接;斜撑截面形式为H型钢,或者使用工字型钢、双槽钢组合截面、双角钢组合截面;所述斜撑为普通高强度钢板带,或者使用防屈曲耗能支撑或耗能阻尼器支撑;本实施方式以普通高强度H型钢板带为例说明。In the industrialized multi-high-rise assembled steel structure frame-central support system of the present invention, as shown in accompanying drawing 34, its V-shaped lateral force resistance member is made up of diagonal brace 23, cantilever rod I24 and cantilever rod II25; cantilever rod I24 Connected to the bottom and top of the column by welding, the diagonal brace 23 and the cantilever rod I24 are connected by bolts through the cover plate; the cantilever rod II25 is welded on the truss beam 21, and the diagonal brace 23 and the cantilever rod II25 are connected by bolts through the cover plate; The form is H-shaped steel, or I-shaped steel, double-channel steel combined section, double-angle steel combined section; the diagonal brace is an ordinary high-strength steel strip, or buckling-resistant energy-dissipating support or energy-dissipating damper is used to support; this embodiment Take ordinary high-strength H-shaped steel strips as an example.

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图35所示,其十字交叉形抗侧力构件由斜撑23、悬臂杆I24和伸臂杆26组成;悬臂杆I24通过焊接连接于柱底部和顶部,斜撑23和悬臂杆I24通过盖板用螺栓连接;伸臂杆26焊接于斜撑23上,斜撑23和伸臂杆26通过盖板用螺栓连接;斜撑截面形式为H型钢,或者使用工字型钢、双槽钢组合截面、双角钢组合截面;所述斜撑为普通高强度钢板带,或者使用防屈曲耗能支撑或耗能阻尼器支撑;本实施方式以普通高强度H型钢板带为例说明。In the industrialized multi-story assembled steel structure frame-central support system of the present invention, as shown in accompanying drawing 35, its cross-shaped lateral force-resistant member is made up of diagonal brace 23, cantilever rod 124 and outrigger rod 26; I24 is connected to the bottom and top of the column by welding, and the diagonal brace 23 and the cantilever rod I24 are connected by bolts through the cover plate; the outrigger rod 26 is welded on the diagonal brace 23, and the diagonal brace 23 and the outrigger rod 26 are connected by bolts through the cover plate; The cross-section of the brace is H-shaped steel, or I-shaped steel, double-channel steel composite cross-section, double-angle steel composite cross-section; the diagonal bracing is an ordinary high-strength steel strip, or it is supported by buckling-resistant energy-dissipating supports or energy-dissipating dampers; The embodiment is described by taking a common high-strength H-shaped steel strip as an example.

本发明所述的工业化多高层装配式钢结构框架-中心支撑体系中,如附图36所示,其双向单斜杆式抗侧力构件由斜撑23和悬臂杆I24组成;悬臂杆I24通过焊接连接于柱底部和顶部,斜撑23和悬臂杆I24通过盖板用螺栓连接;斜撑截面形式为H型钢,或者使用工字型钢、双槽钢组合截面、双角钢组合截面;所述斜撑为普通高强度钢板带,或者使用防屈曲耗能支撑或耗能阻尼器支撑;本实施方式以普通高强度H型钢板带为例说明。In the industrial multi-high-rise assembled steel structure frame-central support system according to the present invention, as shown in accompanying drawing 36, its two-way single-slope anti-lateral force member is composed of diagonal brace 23 and cantilever rod I24; the cantilever rod I24 passes through Welding is connected to the bottom and top of the column, the diagonal brace 23 and the cantilever rod I24 are connected by bolts through the cover plate; the cross section of the diagonal brace is H-shaped steel, or I-shaped steel, double channel steel composite section, double angle steel composite section; the diagonal brace The braces are ordinary high-strength steel strips, or buckling-resistant energy-dissipating braces or energy-dissipating dampers; this embodiment is described by taking ordinary high-strength H-shaped steel strips as an example.

在上述工业化多高层装配式钢结构框架-中心支撑体系中,如附图37-40所示,分别作出了斜撑23与框架连接节点处的分解详图。In the above-mentioned industrialized multi-story fabricated steel structure frame-central support system, as shown in Figures 37-40, the detailed exploded diagrams of the connection nodes between the diagonal braces 23 and the frame are respectively made.

Claims (5)

1. an industrialization how high-rise assembling type steel structure frame frame ?center support system, comprises assembling truss plate, assembling flange post and center support component, it is characterized in that:
Described assembling truss plate comprises lattice truss beam, column base node and the floor of being furnished with angle steel web member, described lattice truss beam is by beam-ends shrouding, be connected with other lattice truss beams or column base node, form truss plate under(-)chassis, again form bracing is connected in the truss plate under(-)chassis, form assembling truss plate; Described assembling truss plate is prefabricated in the factory, and is mutually spliced, as frame structural beam flaggy by assembling truss plate at the construction field (site) by its beam-ends shrouding or column base node; Described frame structural beam flaggy is connected to form composite steel frame construction up and down by assembling flange post, and described assembling flange post is positioned on the column base node on assembling truss plate; On the basis of described steel framed structure, center support component is connected at the bottom of girder truss in frame structural beam flaggy or post, top is as lateral resistant member; Described assembling truss plate, assembling flange post and center support component are all prefabricated in the factory, and job site is assembled by bolt;
Described assembling truss plate is connected by bolt with assembling flange post up and down respectively at column base Nodes, forms frame construction; Described center support component is made up of diagonal brace (23) and cantilever lever, cantilever lever in factory by being welded to connect at the bottom of the post of steel framed structure, top or by welding and bolt be connected to steel framed structure girder truss (21) top-bottom chord place, diagonal brace (23) is connected by cover plate bolt at the construction field (site) with the cantilever lever of every floor top and bottom, formed Kuang Jia ?central support structure; Diagonal brace section form is H profile steel, or uses i shaped steel, double flute steel compound section, dual-angle steel combined section; Described diagonal brace is rolled products of ordinary high-strength steel plate strip, or uses buckling-restrained energy-dissipation or passive damper brace;
Beam involved by industrialization how high-rise assembling type steel structure frame frame ?center support system splices by top-bottom chord, web member (2) and gusset plate (3) girder truss formed, wherein top-bottom chord uses angle steel, or use U-steel, or user's steel pipe, web member (2) uses angle steel, web member become with chord member 30 Dus ?the angle of 60 degree; And be divided into single-beam and twin beams, single-beam arranges connecting hole every one section of fixed range, be convenient to two panels single-beam be spliced with bolt when the splicing of plate and plate become twin beams, for twin beams, web member (2), top-bottom chord use bolt be connected or use welding with the connection of gusset plate (3), all complete in factory process;
Or use and splice by angle steel and fill plate the girder truss formed, comprise top-bottom chord, web member (2) and fill plate (4), wherein top-bottom chord and web member (2) all adopt angle steel, web member become with chord member 30 Dus ?the angle of 60 degree; And be divided into single-beam and twin beams, single-beam arranges connecting hole every one section of fixed range, and being convenient to be spliced by two panels single-beam with bolt when the splicing of plate and plate becomes twin beams, for twin beams, angle steel uses bolt be connected or use welding with the connection of fill plate, all completes in factory process.
2. a kind of industrialization according to claim 1 how high-rise assembling type steel structure frame frame ?center support system, is characterized in that: described assembling truss plate comprises three kinds of specifications, is respectively A plate, B plate and C plate;
Described A plate comprises column base node (13), the long girder of double angle truss (14), double angle truss girder (15), the long girder of single angle truss (16), single angle truss secondary beam (17), junction plate I (18), junction plate II (20) and floor (19), it is characterized in that: double angle truss girder (15) is mutually vertical with the long girder of double angle truss (14), and all by beam-ends shrouding, bolt is adopted to be connected with the channel-section steel connecting plate on two-way column block node (13), and the upper and lower end face place of junction is welded with a plate II (20) respectively, the two ends of junction plate II (20) are connected on the top-bottom chord of double angle truss girder (15) and the long girder of double angle truss (14), the other end of double angle truss girder (15) is connected with the long girder of single angle truss (16) with the long girder of double angle truss (14) level, the end of double angle truss girder (15) and the top-bottom chord of the long girder of single angle truss (16) end and beam-ends shrouding are weldingly connected respectively, and double angle truss girder (15) and the long girder of single angle truss (16) are connected by the junction plate I (18) of upper and lower two sections again, and double angle truss girder (15) is all weldingly connected with two pieces of junction plate I (18) with the top-bottom chord of the long girder of single angle truss (16), single angle truss secondary beam (17) is connected to the described long girder of double angle truss (14) and the other end of the long girder of single angle truss (16), relative with double angle truss girder (15) level, top-bottom chord and the beam-ends shrouding of single angle truss secondary beam (17) end, one end and the long girder of single angle truss (16) the other end are weldingly connected respectively, and are connected by two the junction plate I (18) being connected to top-bottom chord place between single angle truss secondary beam (17) with the long girder of single angle truss (16) again, two junction plate II (20) by being connected to top-bottom chord place between single angle truss secondary beam (17) other end end with the long girder of double angle truss (14) are connected, the described long girder of double angle truss (14), double angle truss girder (15), the long girder of single angle truss (16), single angle truss secondary beam (17) form a rectangular frame, two identical rectangular frames carry out the under(-)chassis connecting and composing a splicing, single angle truss secondary beam (17) alignment in two identical rectangular frames is also connected by bolt, and two long girders of double angle truss (14) are positioned on straight line, two long girders of single angle truss (16) are positioned on straight line, the upper and lower side of two long girders of double angle truss (14) all adopts bolt to be connected by the channel-section steel connecting plate in beam-ends shrouding and three-dimensional column base node (13) two relative directions, and two described single angle truss secondary beams (17) are connected on the channel-section steel connecting plate vertical with described both direction on three-dimensional column base node (13), described under(-)chassis is connected with two pieces of floors (19) by girder truss upper chord upper anchoring, all components prefabricated and assembling all in the factory of described A plate,
Described B plate comprises double angle truss girder (15), the long girder of single angle truss (16), single angle truss secondary beam (17), junction plate I (18), junction plate II (20) and floor (19), double angle truss girder (15) is mutually vertical with the long girder of single angle truss (16), top-bottom chord and the beam-ends shrouding of double angle truss girder (15) end and the long girder of single angle truss (16) end are weldingly connected respectively, and be connected by the junction plate I (18) of upper and lower two sections again, and double angle truss girder (15) is all weldingly connected with two pieces of junction plate I (18) with the top-bottom chord of the long girder of single angle truss (16), the other end of double angle truss girder (15) is connected with another the long girder of root single angle truss (16) with described single angle truss long girder (16) level by the junction plate II (20) of upper and lower two sections, and double angle truss girder (15) is all weldingly connected with two pieces of junction plate II (20) with the top-bottom chord of the long girder of single angle truss (16), single angle truss secondary beam (17) is connected to the other end of two described two long girders of single angle truss (16), relative with double angle truss girder (15) level, single angle truss secondary beam (17) is identical with the type of attachment of two long girders of single angle truss (16) with described double angle truss girder (15) with the type of attachment of two long girders of single angle truss (16), described double angle truss girder (15), the two long girders of single angle truss (16), single angle truss secondary beams (17) form a rectangular frame, two identical rectangular frames carry out the under(-)chassis connecting and composing a splicing, single angle truss secondary beam (17) alignment in two identical rectangular frames is also connected by bolt, and the relative two long girders of single angle truss (16) of rectangular frame level two piece single angle truss long girders (16) relative with another length direction framework level lay respectively on straight line, described under(-)chassis is connected with two pieces of floors (19) by girder truss upper chord upper anchoring, all components prefabricated and assembling all in the factory of described B plate,
Described C plate comprises column base node (13), double angle truss girder (15), the long girder of single angle truss (16), single angle truss secondary beam (17), junction plate I (18), junction plate II (20) and floor (19), double angle truss girder (15) is mutually vertical with the long girder of single angle truss (16), and all by beam-ends shrouding, the channel-section steel connecting plate adjacent with two on three-dimensional column base node (13) adopts bolt to be connected, and the upper and lower end face place of junction is welded with a plate II (20) respectively, the two ends of junction plate II (20) are connected on the top-bottom chord of double angle truss girder (15) and the long girder of single angle truss (16), the other end of double angle truss girder (15) is by being welded to connect another the long girder of root single angle truss (16) with the long girder of single angle truss (16) level, top-bottom chord and the beam-ends shrouding of double angle truss girder (15) end and this root single angle truss long girder (16) end are weldingly connected respectively, and double angle truss girder (15) and the long girder of single angle truss (16) are connected by the junction plate I (18) of upper and lower two sections again, and double angle truss girder (15) is all weldingly connected with two pieces of junction plate I (18) with the top-bottom chord of the long girder of single angle truss (16), single angle truss secondary beam (17) is connected to the other end of two described long girders of single angle truss (16), relative with double angle truss girder (15) level, top-bottom chord and the beam-ends shrouding of single angle truss secondary beam (17) end, one end and the long girder of single angle truss (16) the other end are weldingly connected respectively, and are connected by two the junction plate I (18) being connected to top-bottom chord place between single angle truss secondary beam (17) with the long girder of single angle truss (16) again, two junction plate II (20) by being connected to top-bottom chord place between single angle truss secondary beam (17) other end end with the long girder of single angle truss (16) are connected, described double angle truss girder (15), the two long girders of single angle truss (16), single angle truss secondary beams (17) form a rectangular frame, two identical rectangular frames carry out the under(-)chassis connecting and composing a splicing, single angle truss secondary beam (17) alignment in two identical rectangular frames is also connected by bolt, and the relative two long girders of single angle truss (16) of rectangular frame level two piece single angle truss long girders (16) relative with another length direction framework level lay respectively on straight line, the upper and lower side of two long girders of single angle truss (16) all adopts bolt to be connected by the channel-section steel connecting plate in beam-ends shrouding and four-way column base node (13) two relative directions, and two described single angle truss secondary beams (17) are connected on the channel-section steel connecting plate vertical with described both direction on three-dimensional column base node (13), described under(-)chassis is connected with two pieces of floors (19) by girder truss upper chord upper anchoring, all components prefabricated and assembling all in the factory of described C plate,
In industrialization how high-rise assembling type steel structure frame frame ?center support system, described A plate and B plate, by A plate and the alignment of B plate level, one end of junction plate I (18) there are to be spliced by beam-ends shrouding bolt one end not connecting column base of the double angle truss girder (15) of A plate and the double angle truss girder (15) of B plate; Beam-ends shrouding is spliced by bolt by the one end of junction plate I (18) that has of one end not connecting column base of the single angle truss secondary beam (17) of A plate and the single angle truss secondary beam (17) of B plate; By bolt, single-beam is spliced every one section of fixed range at the long girder of single angle truss (16) of A plate and the long girder of single angle truss (16) the gusset plate place of B plate, make two panels single-beam be connected to become twin beams; Then cover plate is added at splicing node upper and lower surface bolt; Thus complete the splicing of A plate and B plate;
In industrialization how high-rise assembling type steel structure frame frame ?center support system, described B plate and C plate, by B plate and C plate level alignment, by the double angle truss girder (15) of B plate have one end of junction plate II (20) and the three-dimensional column base node (13) of C plate expose channel-section steel connecting plate by beam-ends shrouding adopt bolt be connected; By the single angle truss secondary beam (17) of B plate have one end of junction plate II (20) and the four-way column base node (13) of C plate expose channel-section steel connecting plate by beam-ends shrouding adopt bolt be connected; All adopt bolt to be connected by the channel-section steel connecting plate in beam-ends shrouding and four-way column base node (13) two relative directions the upper and lower side of two of B plate long girders of single angle truss (16), adopt bolt to be connected with the described vertical channel-section steel connecting plate of channel-section steel that exposes by beam-ends shrouding with on the three-dimensional column base node (13) of C plate respectively by beam-ends shrouding the other end of the long girder of single angle truss (16) of B plate; By bolt, single-beam is spliced every one section of fixed range at the long girder of single angle truss (16) of B plate and the long girder of single angle truss (16) the gusset plate place of C plate, make two panels single-beam be connected to become twin beams; Then cover plate is added at splicing node upper and lower surface bolt; Thus complete the splicing of B plate and C plate.
3., in industrialization according to claim 1 how high-rise assembling type steel structure frame frame ?center support system, it is characterized in that: its column base has three kinds of forms, be respectively two to column base, three-dimensional column base and four-way column base; Flanged plate I (7) is located welding up and down at box column (8), then two panels channel-section steel (9) is welded in box column (8) adjacent both sides thus forms two to column base; Flanged plate I (7) is located welding up and down at box column (8), then three channel-section steels (9) is welded in box column (8) three limit thus forms three-dimensional column base; Flanged plate I (7) is located welding up and down at box column (8), then four channel-section steels (9) is welded in box column (8) four limit thus forms four-way column base; Wherein channel-section steel (9) web has bolt hole, splice with beam upper-end closing plate bolt.
4. in industrialization according to claim 1 how high-rise assembling type steel structure frame frame ?center support system, it is characterized in that: assembling flange post is made up of with flanged plate II (10), flanged plate III (11), flanged plate IV (12) respectively box column (8), common flanged plate is extended to both direction and is flanged plate II (10), extend to three directions and be flanged plate III (11), extend to four direction and be flanged plate IV (12); The flange post of 3 kinds of forms can be divided into according to the difference of the shape of its flanged plate, be respectively bilateral flange post, three limit flange posts and four limit flange posts; Flanged plate II (10) is located welding up and down at box column (8), thus forms bilateral flange post; Flanged plate III (11) is located welding up and down at box column (8), thus forms three limit flange posts; Flanged plate IV (12) is located welding up and down at box column (8), thus forms four limit flange posts; Described three kinds of assembling flange posts all complete at produce in factory.
5. in industrialization according to claim 1 how high-rise assembling type steel structure frame frame ?center support system, it is characterized in that: described floor uses profiled steel sheet combination floor, or reinforced concrete floor, or OSB shaving board.
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