CN108564343A - A kind of pipe prefabrication construction method using BIM technology - Google Patents
A kind of pipe prefabrication construction method using BIM technology Download PDFInfo
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- CN108564343A CN108564343A CN201810321598.2A CN201810321598A CN108564343A CN 108564343 A CN108564343 A CN 108564343A CN 201810321598 A CN201810321598 A CN 201810321598A CN 108564343 A CN108564343 A CN 108564343A
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- G06Q10/00—Administration; Management
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- G06Q10/103—Workflow collaboration or project management
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
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- B41J3/00—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
- B41J3/44—Typewriters or selective printing mechanisms having dual functions or combined with, or coupled to, apparatus performing other functions
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- B—PERFORMING OPERATIONS; TRANSPORTING
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Abstract
The invention discloses a kind of pipe prefabrication construction method using BIM technology, this method, as BIM related data storage sites, a local area network is constituted by more wireless routers and scene BIM terminating machines using server.Model is transferred for the unique Quick Response Code of each pipe prefabrication part generation by BIM terminating machines by construction personnel and is pasted onto pipe prefabrication part surface, different colours are marked by BIM terminating machines for the pipe prefabrication part under the different construction stages, associated construction information is obtained, construction efficiency is improved with this.Pipeline prefabricated component managerial confusion in conventional pipelines work progress is effectively prevented, the problems such as construction personnel can not accurately count pipe prefabrication part Wrong, missing situation is solved, has saved the duration, greatly reduced building cost.
Description
Technical field
The invention belongs to the realm of building construction, are related to a kind of pipe prefabrication construction method, and in particular to a kind of to use BIM skills
The pipe prefabrication construction method of art.
Background technology
The content of continuous improvement with modern architecture to electromechanical installation requirement, electromechanical installation section becomes increasingly complex, and
Prefabricated processing technology, certainly will be by the weight of each construction enterprises as the important indicator for weighing an advanced degree of electromechanical construction enterprises
Depending on.Although carrying out pipeline engineering construction in such a way that pipe prefabrication processing is combined using threedimensional model, prefabricated processing is improved
The precision of figure and the efficiency for making prefabricated manuscript, but pipe prefabrication part because its type it is more, Deepen Design is difficult to and construction nothing
The situations such as seam docking, also result in the problem of pipe prefabrication part field management confusion, construction personnel is difficult not only to pipe prefabrication
Part Wrong, missing situation is counted, and can not also be constructed according to normal procedure.
Invention content
Present invention aim to address above-mentioned technical problems, it is proposed that a kind of pipe prefabricationization using BIM technology is constructed
Method, including a server, several BIM terminating machine sum number platform wireless routers.It is stored as BIM related datas by server
It stands, a local area network is constituted by more wireless routers and scene BIM terminating machines.
BIM terminating machines are made of PLC module, touch screen, print module, scan module and power module, the touch screen
Module can open related BIM softwares, transfer and check pertinent model information, and correlation model is identified or color mark,
The print module can print the corresponding Quick Response Code of associated conduit prefabricated component model or other label informations, the scan module
It can identify the Quick Response Code or other label informations and be located in corresponding pipeline section in model.
In order to solve the above-mentioned technical problem, the technical solution adopted by the present invention is:
A kind of pipe prefabrication construction method using BIM technology, which is characterized in that include the following steps:
Step 1:Based on design drawing, model buildings are carried out to the full profession of project using BIM technology, then by pipeline mould
Type carries out the requirement that Deepen Design reaches prefabricated processing, forms model file;
Step 2:This model file is preserved, model file is saved in a manner of hub file on background server, mould
The wave file of type is saved on BIM terminating machines, and by server to every mobile terminal user access account create;
Step 3:Pipe prefabrication producer is to pass through BIM ends according to production pipeline prefabricated component with the model after Deepen Design
Terminal transfers model and generates unique sign flag for each pipe prefabrication part and be pasted onto its surface;
Step 4:When pipe prefabrication part prepares transport to scene, two dimension on BIM terminating machines scanning pipeline prefabricated component is used
Code, and it is identified as pipe prefabrication part production status, prepare entrucking transport;
Step 5:Wireless LAN is built at scene, and BIM terminating machines are issued to site operation personnel again after being provided with
In hand, the preparation before application is completed;
Step 6:After materials arrival, construction personnel scans Quick Response Code on pipe prefabrication part of marching into the arena by BIM terminating machines, presses
Region is stacked, and corresponding model is identified as the scene of being transported to and carries out subregion stacking state;
Step 7:Pipe installing personnel scan Quick Response Code on pipeline prefabricated component by BIM terminating machines, transfer the pipe prefabrication
The relevant information of part model installs the pipe prefabrication part according to the correspondence model coordinate of display, and pipe prefabrication part is corresponded to mould
Type is identified as installation condition;
Step 8:For not being inconsistent there are pipe prefabrication part production specification in individual work progress or construct that there are quality problems
In the case of, the pipe prefabrication part Quick Response Code can be also scanned, is identified as by BIM terminating machines unqualified;
Step 9:Above step three is repeated to step 8, until all label is project pipeline model for installation condition
Construction is completed.
As an improvement, to pipe prefabrication part status indicator using words identification, different colours mark and different graphic mark
A kind of or arbitrarily several combinations in knowledge.
As an improvement, transferring model by BIM terminating machines and generating unique sign flag for each pipe prefabrication part and be
Quick Response Code or bar code.
As an improvement, the BIM terminating machines include shell, touch screen, printing outlet and probe.
Compared with prior art, present invention has the advantages that:
One, real time implementation.The BIM terminating machines of onsite application have connected internal network, can be in real time with server into line number
According to information exchange, installation personnel can learn field pipes prefabricated component practice of construction progress situation at the first time.
Two, component tracks.Pipe prefabrication part, up to construction completion, is adopted from production to processing, transport, scene storage, installation
The mode marked with different colours, can be inquired on BIM terminating machines, be tracked, and related personnel can understand pipe at the first time
Road prefabricated component status.
Three, multifunction.BIM terminating machines gather multi -function in integral whole used in the present invention, function include with
Lower several points:
1, BIM terminating machines may specify that pipe prefabrication part model generates unique Quick Response Code, bar code or other label symbols
And it prints.
2, BIM terminals function scans the two-dimensional code, and is positioned for the pipe prefabrication part in model;
3, BIM terminating machines can also carry out color or other marks in touch screen module to the pipe prefabrication part model
Mark, carrys out the use state of display pipes prefabricated component.
4, BIM terminating machines can directly transfer the model information in server, and local information is uploaded synchronization in real time, real
Data sharing in existing scope of project.
Four, intelligent.When finish message, BIM terminating machines can directly carry out quantity statistics, and place is shown in the form of inventory
Pipe prefabrication part quantities under different conditions is used for construction site management.
Five, information-based.Site operation personnel can directly understand title, the generation of in-situ precast pipe fitting by BIM terminating machines
Number and the information such as Construction State, improve efficiency.
Description of the drawings
Fig. 1 is the live preparation stage flow chart of the embodiment of the present invention;
Fig. 2 is BIM terminating machine circuit diagrams of the embodiment of the present invention;
Fig. 3 is BIM terminating machine structural maps of the embodiment of the present invention;
Fig. 4 is BIM terminating machine dorsal views of the embodiment of the present invention;
Fig. 5 is BIM platform building schematic diagrames of the embodiment of the present invention.
In figure, DY- power modules, PLC- programmable logic controller (PLC)s, SB1、SB2Control switch, DYJ- print modules,
SXT- scan modules, CMP- touch screen modules, DY- power modules, 101- touch screens, 102- shells, 103,104- control switch,
105- charging jacks, 106- printings outlet, 107- probes.
Specific implementation mode
The present invention is illustrated below in conjunction with the accompanying drawings,
In the preferred embodiment of the present invention, live preparation stage flow chart is as shown in Figure 1, first ripe by BIM engineer
Design drawing is known, the full profession of project is modeled using BIM softwares, pipeline model progress Deepen Design is then reached prefabricated
The requirement for changing processing, this file is saved in a manner of hub file on background server, the wave file of model is saved in
On BIM terminating machines, and by server to every BIM terminating machine user access account create, according to debugging and installation point
The access right of every BIM terminating machine is arranged in work difference, and scene builds Wireless LAN, again by BIM ends after being provided with
Terminal is issued in live associated construction personnel hand, completes the preparation before application, construction personnel is according to the prefabricated component shown up
Corresponding Quick Response Code is generated by BIM terminating machines and is pasted onto preform surfaces, when the prefabricated component is in the different construction stages, is applied
Then worker person is marked, project manager is by transferring model in different colors by scanning the prefabricated component Quick Response Code
Check color residing for prefabricated component, you can the prefabricated component status is conveniently known, to realize the whole process of entire pipe prefabrication
Construction management.
In the preferred embodiment of the present invention, BIM terminating machines circuit diagram is as shown in Fig. 2, No. 1 of power module DY
Terminal exchanges No. 1 terminal with outside 220V and connect, and No. 2 terminals and the outside 220V of power module DY exchange No. 2 terminals and connect, electricity
The 24V+ terminals of source module DY and control switch SB1No. 1 terminal be connected, 24V- terminals and the control of power module DY are opened
Close SB1No. 2 terminals be connected, No. 3 terminals of power module DY and control switch SB2No. 2 terminals be connected, the 4 of power module DY
Number terminal and control switch SB2No. 1 terminal be connected, control switch SB1No. 3 terminals and touch screen module CMP No. 24V+ end
Son, the 24V+ terminals of programmable logic controller (PLC) PLC, the 24V+ terminals of scan module SXT and print module DYJ
24V+ terminals are connected, 24V- terminals, the Programmable logical controller of No. 4 terminals and touch screen module CMP of control switch SB1
The 24V- terminals of the 24V- terminals of device PLC, the 24V- terminals of scan module SXT and print module DYJ are connected, control
No. 3 terminals of switch SB2 are connected with No. 1 terminal of programmable logic controller (PLC) PLC, No. 4 terminals of control switch SB2 with can compile
No. 2 terminals of journey logic controller PLC are connected, and RS485+ terminals on the channel C H1 of programmable logic controller (PLC) PLC and beat
The RS485+ terminals of impression block DYJ are connected, and RS485- terminals on the channel C H1 of programmable logic controller (PLC) PLC and beat
The RS485- terminals of impression block DYJ are connected, the RS485+ terminals on the channel C H2 of programmable logic controller (PLC) PLC with sweep
The RS485+ terminals for retouching module SXT are connected, RS485- terminals on the channel C H2 of programmable logic controller (PLC) PLC with sweep
The RS485- terminals for retouching module SXT are connected, RS485+ terminals on the channel C H3 of programmable logic controller (PLC) PLC with touch
The RS485+ terminals for touching panel module CMP are connected, RS485- terminals on the channel C H3 of programmable logic controller (PLC) PLC with
The RS485- terminals of touch screen module CMP are connected.
As shown in figure 3, BIM terminating machines of the present invention are by PLC module, touch screen, print module, scan module and power module
Composition, the touch screen are located at BIM terminals top, and operating personnel can open related BIM softwares by touch screen, transfer and look into
It sees pertinent model information, and is operated on the touchscreen, correlation model is identified or color marks, the print module
Positioned at BIM terminal motor spindles, print module can print the corresponding Quick Response Code of associated conduit prefabricated component model or other label letters
Breath, the scan module are located at BIM terminating machines back, and scan module can identify the Quick Response Code or other label informations and position
The corresponding pipeline section in model.It is additionally provided with charging jacks on the surface of terminating machine and control switch, external power supply pass through
Connection charging jacks can charge to BIM terminating machines, and control switch can realize the electricity between the several modules of BIM terminating machines
Source on-off function.
The present invention a preferred embodiment in, BIM terminating machines structural map as shown in figure 3,102 centre of shell equipped with touch
Screen 101 is touched, 101 lower section of touch screen has printing to export equipped with control switch 103,104 and charging jacks 105, in 102 bottom of shell
106.In the preferred embodiment of the present invention, BIM terminating machines dorsal view is as shown in figure 4,102 back of shell is equipped with probe
107。
In the preferred embodiment of the present invention, BIM platform buildings schematic diagram using a server as shown in figure 5, made
For field data store, by in-situ data, administrative staff are managed.LAN, Jiang Duotai are built in range at the construction field (site)
BIM terminating machines implement field data and collect and feed back, held by construction personnel as data access end.Utilize a server
One interaction platform is constituted by network data transmission with more BIM terminating machines.
A kind of pipe prefabrication construction method using BIM technology includes the following steps:
Step 1:Based on design drawing, model buildings are carried out to the full profession of project using BIM technology, then by pipeline mould
Type carries out the requirement that Deepen Design reaches prefabricated processing, forms model file;
Step 2:This model file is preserved, model file is saved in a manner of hub file on background server, mould
The wave file of type is saved on BIM terminating machines, and by server to every mobile terminal user access account create;
Step 3:Pipe prefabrication producer is to pass through BIM ends according to production pipeline prefabricated component with the model after Deepen Design
Terminal transfers model and generates unique sign flag for each pipe prefabrication part and be pasted onto its surface;
Step 4:When pipe prefabrication part prepares transport to scene, two dimension on BIM terminating machines scanning pipeline prefabricated component is used
Code, and it is identified as pipe prefabrication part production status (blue), prepare entrucking transport;
Step 5:Wireless LAN is built at scene, and BIM terminating machines are issued to site operation personnel again after being provided with
In hand, the preparation before application is completed;
Step 6:After materials arrival, construction personnel scans Quick Response Code on pipe prefabrication part of marching into the arena by BIM terminating machines, presses
Region is stacked, and corresponding model is identified as the scene of being transported to and carries out subregion stacking state (yellow);
Step 7:Pipe installing personnel scan Quick Response Code on pipeline prefabricated component by BIM terminating machines, transfer the pipe prefabrication
The relevant information of part model installs the pipe prefabrication part according to the correspondence model coordinate of display, and pipe prefabrication part is corresponded to mould
Type is identified as installation condition (green);
Step 8:For not being inconsistent there are pipe prefabrication part production specification in individual work progress or construct that there are quality problems
In the case of, the pipe prefabrication part Quick Response Code can be also scanned, is identified as unqualified (red) by BIM terminating machines;
Step 9:Above step three is repeated to step 8, until all label is that installation condition is (green to project pipeline model
Color) i.e. construction completion.
As a kind of more excellent embodiment, to pipe prefabrication part status indicator using words identification, different colours mark and
A kind of or arbitrarily several combinations in different graphic mark, when using colour code, specific a kind of the color meaning of embodiment such as figure
It is shown.
1 color mark of embodiment of the present invention table of table table corresponding with pipe prefabrication part state
As a kind of more excellent embodiment, model is transferred by BIM terminating machines and is generated uniquely for each pipe prefabrication part
Sign flag is Quick Response Code or bar code.
Claims (4)
1. a kind of pipe prefabrication construction method using BIM technology, which is characterized in that include the following steps:
Step 1:Based on design drawing, model buildings are carried out to the full profession of project using BIM technology, then by pipeline model into
Row Deepen Design reaches the requirement of prefabricated processing, forms model file;
Step 2:This model file is preserved, model file is saved in a manner of hub file on background server, model
Wave file is saved on BIM terminating machines, and by server to every mobile terminal user access account create;
Step 3:Pipe prefabrication producer is to pass through BIM terminating machines according to production pipeline prefabricated component with the model after Deepen Design
Model is transferred to generate unique sign flag for each pipe prefabrication part and be pasted onto its surface;
Step 4:When pipe prefabrication part prepares transport to scene, using Quick Response Code on BIM terminating machines scanning pipeline prefabricated component, and
It is identified as pipe prefabrication part production status, prepares entrucking transport;
Step 5:Wireless LAN is built at scene, and BIM terminating machines are issued to site operation personnel's hand again after being provided with
In, complete the preparation before application;
Step 6:After materials arrival, construction personnel scans Quick Response Code on pipe prefabrication part of marching into the arena by BIM terminating machines, by region
It stacks, and corresponding model is identified as the scene of being transported to and carries out subregion stacking state;
Step 7:Pipe installing personnel scan Quick Response Code on pipeline prefabricated component by BIM terminating machines, transfer the pipe prefabrication part mould
The relevant information of type installs the pipe prefabrication part according to the correspondence model coordinate of display, and pipe prefabrication part is corresponded to model mark
Know for installation condition;
Step 8:For not being inconsistent there are pipe prefabrication part production specification in individual work progress or construct that there are the feelings of quality problems
Under condition, the pipe prefabrication part Quick Response Code can be also scanned, is identified as by BIM terminating machines unqualified;
Step 9:Above step three is repeated to step 8, until all label is that installation condition is constructed to project pipeline model
It completes.
2. pipe prefabrication construction method as described in claim 1, it is characterised in that:Pipe prefabrication part status indicator is used
A kind of or arbitrarily several combinations in words identification, different colours mark and different graphic mark.
3. pipe prefabrication construction method as described in claim 1, it is characterised in that:Model needle is transferred by BIM terminating machines
It is Quick Response Code or bar code to generate unique sign flag to each pipe prefabrication part.
4. pipe prefabrication construction method as described in claim 1, it is characterised in that:The BIM terminating machines include shell, touch
Touch screen, printing outlet and probe.
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Cited By (9)
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| CN109460928A (en) * | 2018-11-14 | 2019-03-12 | 南通四建集团有限公司 | The prefabricated warehouse logistics control method of BIM electromechanical pipeline and device |
| CN109711114A (en) * | 2019-03-13 | 2019-05-03 | 江苏柯瑞机电工程股份有限公司 | Pipeline construction and management system based on BIM |
| CN109766620A (en) * | 2019-01-03 | 2019-05-17 | 江南造船(集团)有限责任公司 | Digitize pipeline installation method and its device, equipment and storage medium |
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| CN111666625A (en) * | 2020-06-28 | 2020-09-15 | 同济大学建筑设计研究院(集团)有限公司 | BIM-based pipeline prefabricating method |
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