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WO2019218174A1 - 一种楼层板系统的施工方法 - Google Patents

一种楼层板系统的施工方法 Download PDF

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Publication number
WO2019218174A1
WO2019218174A1 PCT/CN2018/086941 CN2018086941W WO2019218174A1 WO 2019218174 A1 WO2019218174 A1 WO 2019218174A1 CN 2018086941 W CN2018086941 W CN 2018086941W WO 2019218174 A1 WO2019218174 A1 WO 2019218174A1
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WO
WIPO (PCT)
Prior art keywords
slot
wire
base
groove
floor panel
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2018/086941
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English (en)
French (fr)
Inventor
杨泓斌
陈祥祥
李缙
颜旺龙
刘威宏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zengcheng Country Garden Property Development Co Ltd
Original Assignee
Zengcheng Country Garden Property Development Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zengcheng Country Garden Property Development Co Ltd filed Critical Zengcheng Country Garden Property Development Co Ltd
Priority to CN201880000527.0A priority Critical patent/CN112292493A/zh
Priority to PCT/CN2018/086941 priority patent/WO2019218174A1/zh
Publication of WO2019218174A1 publication Critical patent/WO2019218174A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B5/00Floors; Floor construction with regard to insulation; Connections specially adapted therefor
    • E04B5/43Floor structures of extraordinary design; Features relating to the elastic stability; Floor structures specially designed for resting on columns only, e.g. mushroom floors
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F19/00Other details of constructional parts for finishing work on buildings
    • E04F19/02Borders; Finishing strips, e.g. beadings; Light coves
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L1/00Laying or reclaiming pipes; Repairing or joining pipes on or under water

Definitions

  • the invention belongs to the technical field of building construction, and in particular relates to a construction method of a floor panel system.
  • domestic wire construction uses wire in the pre-buried way.
  • high-voltage wires such as fire wires, neutral wires, ground wires, etc.
  • the service life is generally around 10-20 years, and needs to be replaced several times within the service life of the house, resulting in multiple damage to the main structure and reducing the service life of the house.
  • the interior decoration is modified, it is also necessary to destroy the main structure and re-lay the electric wires to reduce the durability of the house.
  • the traditional wire pre-buriing method needs to destroy the main structure during maintenance, and the maintenance is difficult, the cost is high, and the maintenance efficiency is low; at the same time, a large amount of construction waste and noise pollution are generated during maintenance, which will greatly affect the downstairs users. Due to the damage to the main structure, it is not conducive to the modification of the internal decoration, the cost of repairing and the time-consuming is long.
  • the electric wire adopts the pre-buried mode, the electric wire and the main structure are integrated, and the electric wire and the structural main body are inseparably separated, which is not conducive to the modification of the later household type, which is difficult. Meet the needs of residents' diverse and flexible.
  • the technical problem to be solved by the present invention is to provide a method for constructing a floor panel system, which aims to solve the problem that the main structure is damaged when the electric wire is repaired by installing the electric wire in the floor panel by using the pre-buried method in the prior art, and the maintenance is troublesome. , the problem of loud noise.
  • Embodiments of the present invention provide a method for constructing a floor panel system, including the following steps:
  • the wiring component comprises a base and a cover plate; a plurality of wire slots disposed along a length direction thereof are formed or formed on a long plate, and a buckle structure is formed on the notch of the wire groove, a base; a structure that is fastened to the slot of the slot on another elongated block to form the cover;
  • steps S15 and S16 can also be replaced by the following steps:
  • the cover plate is snapped onto the slot of the slot, and the cover plate is snap-fitted with the base to form the floor panel system.
  • preparing the base includes the following steps:
  • the formulation of the wood-plastic composite material is prepared according to the following parts by weight: 45 parts of polyethylene, 47 parts of wood powder, 1 part of maleic anhydride grafted polyethylene, 1 part of polyethylene wax, 1 part of zinc stearate, color 2 parts of powder, 0.6 parts of t-butyl hydroquinone, 0.8 parts of UV-resistant absorbent UV-1130, 0.6 parts of stearic acid and 1 part of lubricant.
  • the preparing the base comprises the following steps:
  • the wire groove is cut on a plate-shaped profile, and then a snap structure is cut on the side of the profile, that is, the base is made.
  • the slot width of the slot formed or formed is smaller than the width of the slot space.
  • the prepared wiring member is a strong electric wiring member
  • the electric wire prepared or purchased is a strong electric wire
  • the strong electric wire is taken from the The slot of the slot of the strong electric wiring member is pressed into the slot, or a port from both ends of the slot of the strong electric wiring member penetrates into the slot of the strong electric wiring member.
  • the groove formed by the floor panel during molding comprises a lateral groove and a longitudinal groove, and the lateral groove communicates with the longitudinal groove.
  • the present invention has the beneficial effects that the present invention provides a method for constructing a floor panel system in which the electric wire is separated from the main structure, and the floor panel is formed with a groove during the pouring forming process, thereby passing through the wiring member.
  • the wire is fixedly installed in the groove, which overcomes the disadvantages of the need to open the floor panel during the maintenance of the conventional pre-buried line, realizes the separation of the line from the main structure (SI separation), reduces damage to the structural body, and greatly increases the safety and reliability of the house. Durability.
  • the separate design of the wire and the main structure provides more space for interior and equipment renewal.
  • the wires and equipment can be updated without damaging the main structure, which greatly saves the cost of later maintenance and modification. It greatly reduces the construction waste and noise pollution generated during the later maintenance and renovation, and reduces the damage to the natural environment. Reducing the impact on the downstairs users during maintenance can greatly improve the satisfaction of the occupants.
  • the occupants can modify the unit according to the needs of each individual to maximize the satisfaction of residential use requirements.
  • FIG. 1 is a flow chart of a construction method of a floor panel system according to an embodiment of the present invention
  • FIG. 2 is a schematic structural view of a floor panel with a groove formed by pouring according to an embodiment of the present invention
  • FIG. 3 is a schematic exploded view of a wiring member according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural view showing a plurality of wire grooves arranged on the base of FIG. 3;
  • Figure 5 is a schematic cross-sectional structural view of the wiring member shown in Figure 3 after the wires are assembled and assembled;
  • Figure 6 is a cross-sectional structural view showing the wiring member shown in Figure 5 installed in the groove on the bottom surface of the floor panel;
  • Figure 7 is a schematic view of a floor panel system according to an embodiment of the present invention.
  • FIG. 8 is a flow chart of another construction method of a floor panel system according to an embodiment of the present invention.
  • a preferred embodiment of the present invention provides a method for constructing a floor panel system, including the following steps:
  • the wiring member 3 is prepared, and the wiring member 3 includes a base 31 and a cover plate 32.
  • a plurality of spaced-apart slot 311 disposed along the length thereof is formed or formed on a long plate. Then, a snap structure is formed on the slot of each of the slots 311 to obtain the base 31; and a structure that is engaged with the slot of the slot 211 is formed or formed on the other elongated block, thereby obtaining a structure Cover plate 32;
  • the wire 2 is pressed into the wire slot 311 from the slot of the wire slot 311, or penetrates into the wire slot 311 from a port at both ends of the wire slot 311;
  • the cover plate 32 is buckled on the slot of the slot 311, and the cover plate 32 is formed into a snap connection with the base 31;
  • the wiring member 3 on which the electric wire 2 is mounted is mounted in the recess 11 on the bottom surface of the floor panel 1, that is, the floor panel system is manufactured.
  • the base 31 is placed in the recess 11 in the bottom surface of the floor panel 1, and the base 31 is fixedly mounted in the recess 11 of the floor panel 1 by screws 5;
  • the cover plate 32 is snapped onto the slot of the slot 311, and the cover plate 32 is snap-connected with the base 31 to form the floor panel system.
  • step S11 the following two methods can be used for preparing the base 31:
  • Method 1 A metal mold matching the shape of the base 31 is prepared in advance, and then the base 31 is injection molded using a wood plastic composite material in combination with the metal mold.
  • Method 2 Cutting the wire groove 311 on a plate-shaped profile, and then cutting the buckle structure on the side of the profile, that is, the base 31 is prepared.
  • the notch width of the opened or formed wire groove 311 is smaller than the width of the inner space of the groove, so that the electric wire pressed or inserted into the wire groove 311 is not easily detached from the wire groove 311.
  • the prepared wiring member 3 is a strong electric wiring member
  • the electric wire 3 prepared or purchased is a strong electric wire
  • the strong electric wire is taken from the device.
  • the notch of the wire slot 311 of the high-voltage wiring member is pressed into the wire groove 311 of the high-voltage wiring member, or the high-voltage wiring member is penetrated from the port at both ends of the wire groove 311 of the high-voltage wiring member. Inside the slot 311.
  • the base 31 and the cover plate 32 of the wiring member 3 described above are each made of a wood-plastic composite material. Of course, in practical applications, other materials, such as wood, may be used for cutting.
  • This embodiment provides a preferred wood-plastic composite material for the material of the base 31 and the cover plate 32.
  • the formulation of the wood-plastic composite material is prepared according to the following parts by weight: 45 parts of polyethylene, 47 parts of wood powder, and horse.
  • the base 21 and the cover plate 22 made of the wood-plastic composite material have certain structural strength, effectively ensuring the durability and anti-aging ability of the product, prolonging the service life, and the quality thereof is light. Easy to produce and install.
  • the lead-out position with the electric wire 2 on the floor panel 1 can be set according to requirements.
  • the groove 11 formed by the floor panel 1 at the time of molding has the lateral groove 12 And a longitudinal groove 13 communicating with the longitudinal groove 11.
  • a diverter 4 for arranging the electric wire 2 is installed at the intersection of the lateral groove 12 and the longitudinal groove 13, the diverter 4 except for the appearance shape
  • the structure also includes a cover plate and a base which are mutually buckled, and the base has a wire slot for wiring.
  • the diverter 4 has an L shape, and of course, in other embodiments. It is in the shape of a cross.
  • the wiring member 3 disposed in the lateral groove 12 and the wiring member 3 disposed in the longitudinal groove 13 are correspondingly butted to both ends of the diverter 4, so that the electric wire 2 disposed in the lateral groove 12 passes through the diverter 4 turning into the wiring member 3 in the longitudinal groove 13, or causing the electric wire 2 disposed in the longitudinal direction groove 13 to be steered through the diverter 4 into the wiring member 3 in the lateral groove 12, thereby enabling the electric wire 2 to Turn between the two for horizontal and vertical layout.
  • the bottom surface of the floor panel 1 is formed with the recess 11 during the pouring forming process, so that the electric wire 2 can be fixedly mounted in the recess 11 through the wiring member 3, thereby overcoming the conventional pre-buried.
  • the disadvantages of the floor panel need to be solved, and the separation of the line from the main structure (SI separation) is realized, thereby reducing damage to the structural body and greatly increasing the safety, reliability and durability of the house.
  • the separate design of the electric wire 2 and the floor panel 1 provides more space for interior installation and equipment renewal.
  • the electric wires and equipment can be updated without destroying the main structure, which greatly saves the cost of post-maintenance and modification. It greatly reduces the construction waste and noise pollution generated during the later maintenance and renovation, and reduces the damage to the natural environment. Reducing the impact on the downstairs users during maintenance can greatly improve the satisfaction of the occupants.
  • the occupants can modify the unit according to the needs of each individual to maximize the satisfaction of residential use requirements.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • General Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Floor Finish (AREA)

Abstract

一种楼层板系统的施工方法,步骤如下:制备楼层板(1),楼层板(1)的底面具有凹槽(11);制备布线件(3),于一长条板块上开设或成型出沿其长度方向布设的若干线槽(311),并于线槽(311)的槽口形成卡扣结构,制得底座(31);于另一长条板块上开设或成型出与线槽(311)槽口相卡扣的结构,制得盖板(32);制备或购买电线(2);将电线(2)装入线槽(311)内;将盖板(32)卡扣于线槽(311)的槽口上,使盖板(32)与底座(31)卡扣连接;将安装好电线(2)的布线件(3)安装于凹槽(11)内,即制作出楼层板系统。该方法克服了传统预埋线路维修时需开凿楼板、楼层板的弊端,实现了线路与主体结构分离,减少了对结构主体的破坏,增加了房屋安全可靠性、耐久性。

Description

一种楼层板系统的施工方法
本发明属于建筑施工技术领域,尤其涉及一种楼层板系统的施工方法。
推动建筑产业现代化最重要的是要促进建设发展方式的转变,必须要摆脱传统建造的模式,寻求一种建筑产业现代化为目标的发展路径。
目前,国内电线施工多采用在墙体预埋方式布设电线,如强电电线(例如,火线、零线、地线等电力线缆)通常预埋于主体结构的楼层板中,然而设备及电线使用年限一般在10-20年左右,在房屋使用年限内需要多次更换,导致多次破坏主体结构,降低房屋使用寿命。另外,在进行内装修改时,也需要破坏主体结构,重新铺设电线,降低了房屋耐久性。
可见,传统电线预埋方法,维修时需要破坏主体结构,且维修难度较大,成本高,维修效率较低;同时,维修时产生大量建筑垃圾及噪音污染,会对楼下用户影响较大。由于主体结构受到损害,不利于后期内装修改,改修成本及耗时较长,此外,由于电线采用预埋方式,电线与主体结构形成一体,电线与结构主体不便分离,不利于后期户型修改,难以满足居住者多样化及灵活化的需求。
发明内容
本发明所要解决的技术问题在于提供一种楼层板系统的施工方法,旨在解决现有技术中采用预埋方式将电线设置于楼层板中所导致的电线维修时会损坏主体结构,且维修麻烦,噪音大的问题。
本发明实施例提供了一种楼层板系统的施工方法,包括以下步骤:
S10、制备楼层板,在施工现场浇筑出底面具有凹槽的楼层板;
S11、制备布线件,所述布线件包括底座以及盖板;于一长条板块上开设或成型出沿其长度方向布设的若干线槽,并于线槽的槽口形成卡扣结构,制得所述底座;于另一长条板块上开设或成型出与所述线槽槽口相卡扣的结构,制得所述盖板;
S13、确定需要的电线类型,并制备或购买电线;
S14、将所述电线从所述线槽的槽口压入线槽内,或者,从所述线槽两端的端口穿入所述线槽内;
S15、将所述盖板卡扣于所述线槽的槽口上,并使盖板与底座形成卡扣连接;
S16、将安装好电线的布线件安装于所述楼层板的凹槽内,即制作出所述楼层板系统。
进一步,所述步骤S15、S16还可以替换为以下步骤:
S15’、将底座放入所述楼层板的凹槽内,用螺钉将底座固定安装于所述楼层板的凹槽内;
S16’、将所述盖板卡扣于所述线槽的槽口上,并使盖板与底座形成卡扣连接,即制作出所述楼层板系统。
进一步地,所述的步骤S11中,制备底座包括以下步骤:
预先制备出与所述底座的形状相配合的金属模具,然后采用木塑复合材料并结合所述金属模具注塑出所述底座;
所述木塑复合材料所采用的配方按照以下重量份配制:聚乙烯45份,木粉47份、马来酸酐接枝聚乙烯1份、聚乙烯蜡1份、硬脂酸锌1份、色粉2份、叔丁基对苯二酚0.6份、抗紫外线吸收剂UV-1130 0.8份、硬脂酸0.6份以及润滑剂1份。
进一步地,所述的步骤S11中,制备所述底座包括以下步骤:
于一块板状的型材上切割出线槽,然后于所述型材的侧面上切割出卡扣结构,即制得所述底座。
进一步地,所述步骤S11中,开设或成型出的线槽的槽口宽度小于槽内空间的宽度。
进一步地,所述步骤S11中,制备的布线件为强电布线件,所述步骤S13中,制备或购买的电线为强电电线,所述步骤S14中,将所述强电电线从所述强电布线件的线槽的槽口压入线槽内,或者,从所述强电布线件的线槽两端的端口穿入所述所述强电布线件的线槽内。
进一步地,所述步骤S10中,所述楼层板在成型时形成的凹槽包括横向凹槽和纵向凹槽,所述横向凹槽与所述纵向凹槽相通。
本发明与现有技术相比,有益效果在于:本发明提供了一种电线与主体结构分离的楼层板系统的施工方法,其楼层板在浇筑成型过程中形成有凹槽,从而可以通过布线件将电线固定安装于凹槽内,克服了传统预埋线路维修时需开凿楼层板的弊端,实现了线路与主体结构分离(SI分离),减少对结构主体的破坏,大大增加了房屋安全可靠性、耐久性。
通过电线与主体结构采用分离式设计,为内装及设备更新提供更大空间,电线及设备可在不破坏主体结构情况下进行更新,大大节约后期维修及改装成本。极大减少了后期维修及改造时产生的建筑垃圾及噪音污染,减少对自然环境的破坏。减少维修时对楼下用户影响,可极大提升居住者满足度。另外,居住者可根据各人需求对户型进行改造,最大化满足住宅使用要求。
附图说明
图1是本发明实施例提供的楼层板系统的施工方法流程图;
图2是本发明实施例提供的一种浇筑成型有凹槽的楼层板结构示意图;
图3是本发明实施例提供的布线件分解结构示意图;
图4是图3中的底座上布设若干线槽的结构示意图;
图5是图3所示的布线件布设电线并装配后的横截面结构示意图;
图6是图5所示的布线件安装在楼层板底面凹槽内的截面结构示意图;
图7本发明实施例提供的楼层板系统的示意图;
图8是本发明实施例提供的楼层板系统的另一种施工方法流程图。
具体实施方式
为了使本发明所要解决的技术问题、技术方案及有益效果更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
如图1至图7所示,为本发明的较佳实施例,提供了一种楼层板系统的施工方法,包括以下步骤:
S10、制备楼层板1,在施工现场浇筑出底面具有凹槽11的楼层板1;
S11、制备布线件3,所述布线件3包括底座31以及盖板32;参阅图4所示,于一长条板块上开设或成型出沿其长度方向布设的若干相互间隔的线槽311,然后于每个线槽311的槽口形成卡扣结构,制得所述底座31;于另一长条板块上开设或成型出与所述线槽211槽口相卡扣的结构,制得所述盖板32;
S13、确定需要的电线类型,并制备或购买电线2;
S14、将所述电线2从所述线槽311的槽口压入线槽311内,或者,从所述线槽311两端的端口穿入所述线槽311内;
S15、将所述盖板32卡扣于所述线槽311的槽口上,并使盖板32与底座31形成卡扣连接;
S16、将安装好电线2的布线件3安装于所述楼层板1底面的凹槽11内,即制作出所述楼层板系统。
请参见图8所示,当采用螺钉5将布线件3固定时,上述步骤S15、S16还可以替换为以下步骤:
S15’、将底座31放入所述楼层板1底面的凹槽11内,用螺钉5将底座31固定安装于所述楼层板1的凹槽11内;
S16’、将所述盖板32卡扣于所述线槽311的槽口上,并使盖板32与底座31形成卡扣连接,即制作出所述楼层板系统。
上述的步骤S11中,制备底座31可采用以下两种方法:
方法一:预先制备出与所述底座31的形状相配合的金属模具,然后采用木塑复合材料并结合所述金属模具注塑出所述底座31。
方法二:于一块板状的型材上切割出线槽311,然后于所述型材的侧面上切割出卡扣结构,即制得所述底座31。
上述步骤S11中,开设或成型的线槽311的槽口宽度小于槽内空间的宽度,从而压入或穿入线槽311内的电线不容易脱离线槽311。
具体地,上述步骤S11中,制备的布线件3为强电布线件,所述步骤S13中,制备或购买的电线3为强电电线,所述步骤S14中,将所述强电电线从所述强电布线件的线槽311的槽口压入所述强电布线件的线槽311内,或者,从所述强电布线件的线槽311两端的端口穿入所述强电布线件的线槽311内。
上述的布线件3的底座31、盖板32均由木塑复合材料制成。当然,在实际应用中,也可能采用其他材料,如木材等切割成型。本实施例为底座31、盖板32的制作材料提供了一种优选的木塑复合材料,该木塑复合材料所采用的配方按照以下重量份配制:聚乙烯45份,木粉47份、马来酸酐接枝聚乙烯1份、聚乙烯蜡1份、硬脂酸锌1份、色粉2份、叔丁基对苯二酚0.6份、抗紫外线吸收剂UV-1130 0.8份、硬脂酸0.6份以及润滑剂1份;通过该木塑复合材料制作的底座21、盖板22具有一定的结构强度,有效地保证了产品的耐用性和抗老化能力,延长使用寿命,并且其质量较轻,便于生产和安装。
为了实现纵横两个方向布线,使得与电线2在楼层板1上的引出位置可以根据需求进行设置,在上述步骤S10中,所述楼层板1在成型时形成的凹槽11有横向凹槽12和纵向凹槽13,所述横向凹槽12与所述纵向凹槽11相通。当需要对布设在楼层板1凹槽11内的电线2进行转向时,在横向凹槽12与纵向凹槽13的交接处安装用于布设电线2的转向器4,该转向器4除了外观形状与布线件不同,其结构也是包括相互卡扣的盖板和底座,底座上具有用于布线的线槽,在本实施例中,转向器4呈L形,当然,在其他实施方式中也可呈十字形等。将布设在横向凹槽12内的布线件3及布设在纵向凹槽13内的布线件3对应对接于转向器4的两端,从而使布设于横向凹槽12内的电线2穿过转向器4转向进入纵向凹槽13内的布线件3中,或者使布设于纵向向凹槽13内的电线2穿过转向器4转向进入横向凹槽12内的布线件3中,进而使电线2能于两者之间转弯进行横向和纵向布局。
本实施例提供的楼层板系统的施工方法,其楼层板1的底面在浇筑成型过程中形成凹槽11,从而可以通过布线件3将电线2固定安装于凹槽11内,克服了传统预埋线路维修时需开凿楼层板的弊端,实现了线路与主体结构分离(SI分离),从而能够减少对结构主体的破坏,大大增加了房屋安全可靠性、耐久性。
通过电线2与楼层板1采用分离式设计,为内装及设备更新提供更大空间,电线及设备可在不破坏主体结构情况下进行更新,大大节约后期维修及改装成本。极大减少了后期维修及改造时产生的建筑垃圾及噪音污染,减少对自然环境的破坏。减少维修时对楼下用户影响,可极大提升居住者满足度。另外,居住者可根据各人需求对户型进行改造,最大化满足住宅使用要求。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (7)

  1. 一种楼层板系统的施工方法,其特征在于,包括以下步骤:
    S10、制备楼层板,在施工现场浇筑出底面具有凹槽的楼层板;
    S11、制备布线件,所述布线件包括底座以及盖板;于一长条板块上开设或成型出沿其长度方向布设的若干线槽,并于线槽的槽口形成卡扣结构,制得所述底座;于另一长条板块上开设或成型出与所述线槽槽口相卡扣的结构,制得所述盖板;
    S13、确定需要的电线类型,并制备或购买电线;
    S14、将所述电线从所述线槽的槽口压入线槽内,或者,从所述线槽两端的端口穿入所述线槽内;
    S15、将所述盖板卡扣于所述线槽的槽口上,并使盖板与底座形成卡扣连接;
    S16、将安装好电线的布线件安装于所述楼层板的凹槽内,即制作出所述楼层板系统。
  2. 如权利要求1所述的施工方法,其特征在于,所述步骤S15、S16还可以替换为以下步骤:
    S15’、将底座放入所述楼层板的凹槽内,用螺钉将底座固定安装于所述楼层板的凹槽内;
    S16’、将所述盖板卡扣于所述线槽的槽口上,并使盖板与底座形成卡扣连接,即制作出所述楼层板系统。
  3. 如权利要求1所述的施工方法,其特征在于,所述的步骤S11中,制备底座包括以下步骤:
    预先制备出与所述底座的形状相配合的金属模具,然后采用木塑复合材料并结合所述金属模具注塑出所述底座;
    所述木塑复合材料所采用的配方按照以下重量份配制:聚乙烯45份,木粉47份、马来酸酐接枝聚乙烯1份、聚乙烯蜡1份、硬脂酸锌1份、色粉2份、叔丁基对苯二酚0.6份、抗紫外线吸收剂UV-1130 0.8份、硬脂酸0.6份以及润滑剂1份。
  4. 如权利要求1所述的施工方法,其特征在于,所述的步骤S11中,制备所述底座包括以下步骤:
    于一块板状的型材上切割出线槽,然后于所述型材的侧面上切割出卡扣结构,即制得所述底座。
  5. 如权利要求1所述的施工方法,其特征在于,所述步骤S11中,开设或成型出的线槽的槽口宽度小于槽内空间的宽度。
  6. 如权利要求1所述的施工方法,其特征在于,所述步骤S11中,制备的布线件为强电布线件,所述步骤S13中,制备或购买的电线为强电电线,所述步骤S14中,将所述强电电线从所述强电布线件的线槽的槽口压入线槽内,或者,从所述强电布线件的线槽两端的端口穿入所述所述强电布线件的线槽内。
  7. 如权利要求1至6中任意一项所述的施工方法,其特征在于,所述步骤S10中,所述楼层板在成型时形成的凹槽包括横向凹槽和纵向凹槽,所述横向凹槽与所述纵向凹槽相通。
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