Construction method, construction device and processor of keel partition wall model
By constructing a keel partition wall family library and determining design parameters, a keel partition wall model is generated, which solves the problem of large differences between the model and the actual engineering situation in the existing technology, and achieves a good match between the model and the actual situation.
Patent Information
- Application Number
- CN202011630771.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-30
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2040-12-30
AI Technical Summary
The keel partition wall model established in the prior art is quite different from the actual engineering situation.
By constructing a library of keel partition walls, including keels, plates and connectors, and generating keel partition wall models based on design parameters. Design parameters include the number of keels, dimension data, position parameters, material and position parameters of the plate, type of connectors and position parameters.
The keel partition model and the actual keel partition wall are basically consistent, ensuring the fit between the model and the actual engineering situation, and avoiding the problem of large differences between the model and the actual situation in the existing technology.
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Figure CN114692262B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of building information models, and more particularly, to a method and device for constructing a keel partition wall model, a computer-readable storage medium, a processor, and an electronic device. Background Art
[0002] In the prior art, there is a large difference between the established keel partition wall model and the actual engineering situation.
[0003] The above information disclosed in the background art section is only used to enhance the understanding of the background art of the technology described herein. Therefore, the background art may contain certain information that is not prior art known to those skilled in the art in this country. Summary of the Invention
[0004] The main object of the present application is to provide a method and device for constructing a keel partition wall model, a computer-readable storage medium, a processor, and an electronic device, so as to solve the problem that there is a large difference between the established keel partition wall model and the actual engineering situation in the prior art.
[0005] According to one aspect of an embodiment of the present invention, there is provided a method for constructing a keel partition wall model, where the keel partition wall is used to connect a top floor slab and a bottom floor slab, and the method includes: constructing a family library of the keel partition wall, where the family library at least includes keels, plates, and connectors, and the keels include horizontal keels and vertical keels; determining design parameters, where the design parameters at least include the number of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors, and the position parameters of the connectors; and generating a keel partition wall model according to the family library and the design parameters.
[0006] Optionally, the connectors include a plurality of first connectors, and generating a keel partition wall model according to the family library and the design parameters includes: retrieving the horizontal keels and the vertical keels from the family library, and constructing a keel framework according to the number of the keels, the dimensional data of the keels, and the position parameters of the keels, where the keel framework includes a plurality of the horizontal keels and a plurality of the vertical keels that intersect; retrieving the first connectors from the family library, and forming a plurality of the first connectors on the keel framework according to the type of the connectors and the position parameters of the connectors, where the first connectors are used to fix the intersection of the horizontal keels and the vertical keels; and retrieving the plates from the family library, and forming a plurality of the plates on the surface of the keel framework according to the material of the plates and the position parameters of the plates, so as to form the keel partition wall model.
[0007] Optionally, retrieve the horizontal keels and the vertical keels from the family library, and construct a keel framework according to the quantity of the keels, the dimensional data of the keels, and the position parameters of the keels, including: constructing a first keel border according to the design parameters and the retrieved horizontal keels and vertical keels, the first keel border including a first horizontal keel, a first vertical keel, a second horizontal keel, and a second vertical keel that are sequentially connected end to end; constructing a plurality of other horizontal keels and a plurality of other vertical keels that intersect in the first keel border to form the keel framework, where the other horizontal keels are the other horizontal keels in the horizontal keels except the first horizontal keel and the second horizontal keel, and the other vertical keels are the other vertical keels in the vertical keels except the first vertical keel and the second vertical keel.
[0008] Optionally, the connecting member further includes a plurality of second connecting members. Retrieve the plates from the family library, and form a plurality of the plates on the surface of the keel framework according to the material of the plates and the position parameters of the plates to form the keel partition wall model, including: constructing a plurality of the plates according to the design parameters and the retrieved plates; controlling the splicing of the plurality of plates so that the size of the spliced plates is equal to the size of the keel framework; laying the spliced plates on the surface of the keel framework; retrieving the second connecting members from the family library, and forming a plurality of the second connecting members on the center lines of the keels of the keel framework according to the type of the connecting member and the position parameters of the connecting member, where the second connecting members are used to fix the spliced plates and the keel framework.
[0009] Optionally, the family library further includes a guide wall, and the design parameters further include the dimensional parameters of the guide wall and the position parameters of the guide wall. Generate a keel partition wall model according to the family library and the design parameters, including: retrieving the guide wall from the family library, and constructing the guide wall according to the dimensional parameters of the guide wall and the position parameters of the guide wall; retrieving the horizontal keels and the vertical keels from the family library, and constructing a keel framework on the guide wall according to the quantity of the keels, the dimensional data of the keels, and the position parameters of the keels, the keel framework including a plurality of the horizontal keels and a plurality of the vertical keels that intersect; retrieving the first connecting members from the family library, and forming a plurality of the first connecting members on the keel framework according to the type of the connecting member and the position parameters of the connecting member, where the first connecting members are used to fix the intersections of the horizontal keels and the vertical keels; retrieving the plates from the family library, and forming a plurality of the plates on the surface of the keel framework and the surface of the guide wall according to the material of the plates and the position parameters of the plates to form the keel partition wall model.
[0010] Optionally, the family library further includes an opening frame, the design parameters further include position parameters of the opening frame, the connecting members further include a plurality of third connecting members. After generating a stud partition wall model according to the family library and the design parameters, the method further includes: removing the board at the position corresponding to the opening frame on the stud partition wall model; retrieving the opening frame from the family library and forming the opening frame on the stud partition wall model with the board removed according to the position parameters of the opening frame, where the opening frame includes a second stud border; retrieving the board from the family library and forming the board on the surface in the first direction of the opening frame according to the material of the board and the position parameters of the board, the first direction being parallel to the thickness direction of the stud partition wall model; retrieving the third connecting members from the family library and forming a plurality of the third connecting members at the intersections of the second stud border and the stud frame and at the intersections of the second stud border and the board according to the type of the connecting members and the position parameters of the connecting members.
[0011] According to another aspect of the embodiments of the present invention, there is also provided a device for constructing a stud partition wall model. The stud partition wall is used to connect a top floor slab and a bottom floor slab. The device includes a first construction unit, a determination unit, and a first generation unit. Among them, the first construction unit is used to construct a family library of the stud partition wall. The family library at least includes studs, boards, and connecting members. The studs include horizontal studs and vertical studs; the determination unit is used to determine design parameters, which at least include the quantity of the studs, the dimensional data of the studs, the position parameters of the studs, the material of the board, the position parameters of the board, the type of the connecting members, and the position parameters of the connecting members; the first generation unit is used to generate a stud partition wall model according to the family library and the design parameters.
[0012] According to still another aspect of the embodiments of the present invention, there is also provided a computer-readable storage medium. The computer-readable storage medium includes a stored program. Among them, the program executes any one of the above methods.
[0013] According to yet another aspect of the embodiments of the present invention, there is also provided a processor. The processor is used to run a program. Among them, when the program runs, it executes any one of the above methods.
[0014] According to yet another aspect of the embodiments of the present invention, there is also provided an electronic device, including: one or more processors, a memory, a display device, and one or more programs. Among them, the one or more programs are stored in the memory and are configured to be executed by the one or more processors. The one or more programs include those for executing any one of the above methods.
[0015] The construction method of the keel partition wall model of the present application. First, construct a family library of the keel partition wall, where the family library includes at least keels, plates, and connectors. The keels include horizontal keels and vertical keels. Then, determine the design parameters, where the design parameters include at least the number of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors, and the position parameters of the connectors. Finally, generate the keel partition wall model according to the family library and the design parameters. By means of the constructed family library and the determined design parameters, the method of the present application can relatively vividly establish the keel partition wall model, ensuring that the constructed keel partition wall model is basically consistent with the actual keel partition wall, ensuring that the keel partition wall model fits well with the actual engineering situation, and preferably avoiding the problem that the keel partition wall model established in the prior art has a large difference from the actual engineering situation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The accompanying drawings forming a part of this application are used to provide a further understanding of the application. The illustrative embodiments and descriptions thereof of the application are used to explain the application and do not constitute an improper limitation to the application. In the drawings:
[0017] Figure 1 The flowchart generated by the construction method of the keel partition wall model according to the embodiment of the present application is shown;
[0018] Figures 2 to 4 The schematic diagrams of the keel partition walls including corners according to three specific embodiments of the present application are respectively shown;
[0019] Figures 5 to 7 The top view schematic diagrams of partial keel partition wall models according to three specific embodiments of the present application are respectively shown;
[0020] Figure 8 The schematic diagram of the construction device of the keel partition wall model according to the embodiment of the present application is shown;
[0021] Figures 9 to 10 The schematic diagrams of the keel frameworks according to the embodiments of the present application are respectively shown;
[0022] Figure 11 The schematic diagram of the opening framework according to the embodiment of the present application is shown.
[0023] Among them, the above-mentioned accompanying drawings include the following reference numerals:
[0024] 100, the first vertical keel; 101, the second vertical keel; 102, other vertical keels; 103, the bottom floor slab; 104, the top floor slab; 105, the first horizontal keel; 106, the second horizontal keel; 200, the second keel frame; 300, the external corner; 301, the internal corner; 302, the C-shaped keel. Detailed implementation manners
[0025] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.
[0026] In order to enable those skilled in the art to better understand the solution of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present application.
[0027] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so as to describe the embodiments of the present application here. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units does not have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0028] It should be understood that when an element (such as a layer, film, region, or substrate) is described as being "on" another element, the element can be directly on the other element, or there can also be an intermediate element. Moreover, in the specification and claims, when an element is described as being "connected" to another element, the element can be "directly connected" to the other element, or "connected" to the other element through a third element.
[0029] As described in the background art, the difference between the keel partition wall model established in the prior art and the actual engineering situation is relatively large. To solve the above problems, in a typical implementation manner of the present application, a method for constructing a keel partition wall model, a construction device, a computer-readable storage medium, a processor, and an electronic device are provided.
[0030] According to an embodiment of the present application, a method for constructing a keel partition wall model is provided.
[0031] Figure 1 is a flowchart of a method for constructing a keel partition wall model according to an embodiment of the present application. The above-mentioned keel partition wall is used to connect the top floor slab and the bottom floor slab, as Figure 1 shown, the method includes the following steps:
[0032] Step S101, construct a family library for the keel partition wall. The above family library includes at least keels, plates, and connectors. The above keels include horizontal keels and vertical keels;
[0033] Step S102, determine the design parameters. The above design parameters include at least the quantity of the above keels, the dimensional data of the above keels, the position parameters of the above keels, the material of the above plates, the position parameters of the above plates, the type of the above connectors, and the position parameters of the above connectors;
[0034] Step S103, generate a keel partition wall model according to the above family library and the above design parameters.
[0035] For the above method of constructing the keel partition wall model, first, construct a family library for the keel partition wall. The above family library includes at least keels, plates, and connectors. The above keels include horizontal keels and vertical keels; then, determine the design parameters. The above design parameters include at least the quantity of the above keels, the dimensional data of the above keels, the position parameters of the above keels, the material of the above plates, the position parameters of the above plates, the type of the above connectors, and the position parameters of the above connectors; finally, generate a keel partition wall model according to the above family library and the above design parameters. With the above method of the present application, through the constructed above family library and the determined above design parameters, the above keel partition wall model can be established more vividly, ensuring that the constructed above keel partition wall model is basically consistent with the actual keel partition wall, ensuring that the keel partition wall model fits well with the actual engineering situation, and preferably avoiding the problem that the keel partition wall model established in the prior art has a large difference from the actual engineering situation.
[0036] It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions. And although the logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in a different order than here.
[0037] In a specific embodiment, the above keels are light steel keels, the above keel partition wall model is a light steel keel partition wall model, the above plates are gypsum plates, and the above connectors include bolts and nail guns. Of course, the above keels can also be keels of other materials, the above keel partition wall model can also be a keel partition wall model of other materials, the above plates can also be plates of other materials, and the above connectors can also include other types of connectors.
[0038] According to a specific embodiment of the present application, the above-mentioned connecting members include a plurality of first connecting members. According to the above-mentioned library of components and the above-mentioned design parameters, a stud partition wall model is generated, including: retrieving the above-mentioned horizontal studs and the above-mentioned vertical studs from the above-mentioned library of components, and constructing a stud framework according to the quantity of the above-mentioned studs, the dimensional data of the above-mentioned studs, and the position parameters of the above-mentioned studs. The above-mentioned stud framework includes a plurality of the above-mentioned horizontal studs and a plurality of the above-mentioned vertical studs that intersect; retrieving the above-mentioned first connecting members from the above-mentioned library of components, and forming a plurality of the above-mentioned first connecting members on the above-mentioned stud framework according to the type of the above-mentioned connecting members and the position parameters of the above-mentioned connecting members. The above-mentioned first connecting members are used to fix the intersection of the above-mentioned horizontal studs and the above-mentioned vertical studs; retrieving the above-mentioned plates from the above-mentioned library of components, and forming a plurality of the above-mentioned plates on the surface of the above-mentioned stud framework according to the material of the above-mentioned plates and the position parameters of the above-mentioned plates, so as to form the above-mentioned stud partition wall model. By retrieving the above-mentioned horizontal studs, the above-mentioned vertical studs, the above-mentioned first connecting members, and the above-mentioned plates from the above-mentioned library of components, and establishing the above-mentioned stud partition wall model according to the above-mentioned design parameters, it is further ensured that the constructed above-mentioned stud partition wall model is basically consistent with the actual stud partition wall, and it is further ensured that the established stud partition wall model fits well with the actual engineering situation. At the same time, it is ensured that the speed of establishing the above-mentioned stud partition wall model is relatively fast.
[0039] In order to further ensure the relatively fast and vivid establishment of the above-mentioned stud framework and facilitate the subsequent establishment of the above-mentioned stud partition wall model, according to another specific embodiment of the present application, the above-mentioned horizontal studs and the above-mentioned vertical studs are retrieved from the above-mentioned library of components, and a stud framework is constructed according to the quantity of the above-mentioned studs, the dimensional data of the above-mentioned studs, and the position parameters of the above-mentioned studs, including: constructing a first stud border according to the above-mentioned design parameters and the retrieved above-mentioned horizontal studs and the above-mentioned vertical studs. The above-mentioned first stud border includes a first horizontal stud, a first vertical stud, a second horizontal stud, and a second vertical stud that are connected in sequence end to end; constructing a plurality of other horizontal studs and a plurality of other vertical studs that intersect in the above-mentioned first stud border to form the above-mentioned stud framework. The above-mentioned other horizontal studs are the other horizontal studs in the above-mentioned horizontal studs except the above-mentioned first horizontal stud and the above-mentioned second horizontal stud, and the above-mentioned other vertical studs are the other vertical studs in the above-mentioned vertical studs except the above-mentioned first vertical stud and the above-mentioned second vertical stud.
[0040] In yet another specific embodiment of the present application, the above-mentioned connecting member further includes a plurality of second connecting members. The above-mentioned sheet materials are retrieved from the above-mentioned library, and according to the material of the above-mentioned sheet materials and the position parameters of the above-mentioned sheet materials, a plurality of the above-mentioned sheet materials are formed on the surface of the above-mentioned keel framework to form the above-mentioned keel partition wall model, including: constructing a plurality of the above-mentioned sheet materials according to the above-mentioned design parameters and the retrieved above-mentioned sheet materials; controlling the splicing of the plurality of the above-mentioned sheet materials so that the size of the spliced above-mentioned sheet materials is equal to the size of the above-mentioned keel framework; laying the spliced above-mentioned sheet materials on the surface of the above-mentioned keel framework; retrieving the above-mentioned second connecting members from the above-mentioned library, and according to the type of the above-mentioned connecting members and the position parameters of the above-mentioned connecting members, forming a plurality of the above-mentioned second connecting members on the center line of the above-mentioned keels of the above-mentioned keel framework, and the above-mentioned second connecting members are used to fix the spliced sheet materials and the above-mentioned keel framework. This further ensures that the above-mentioned keel partition wall model can be established relatively quickly and vividly, and further avoids the problem that the keel partition wall model established in the prior art has a large difference from the actual engineering situation.
[0041] In the actual application process, a guide wall is generally provided in a waterproof room. In order to ensure that the above-mentioned keel partition wall model established in this case is relatively vivid and further ensure that the established keel partition wall model is more in line with the actual engineering situation, in a specific embodiment of the present application, the above-mentioned library further includes a guide wall, and the above-mentioned design parameters further include the size parameters of the above-mentioned guide wall and the position parameters of the above-mentioned guide wall. According to the above-mentioned library and the above-mentioned design parameters, a keel partition wall model is generated, including: retrieving the above-mentioned guide wall from the above-mentioned library and constructing the above-mentioned guide wall according to the size parameters of the above-mentioned guide wall and the position parameters of the above-mentioned guide wall; retrieving the above-mentioned horizontal keels and the above-mentioned vertical keels from the above-mentioned library, and constructing a keel framework on the above-mentioned guide wall according to the number of the above-mentioned keels, the size data of the above-mentioned keels and the position parameters of the above-mentioned keels, and the above-mentioned keel framework includes a plurality of the above-mentioned horizontal keels and a plurality of the above-mentioned vertical keels that intersect; retrieving the above-mentioned first connecting members from the above-mentioned library, and according to the type of the above-mentioned connecting members and the position parameters of the above-mentioned connecting members, forming a plurality of the above-mentioned first connecting members on the above-mentioned keel framework, and the above-mentioned first connecting members are used to fix the intersection of the above-mentioned horizontal keels and the above-mentioned vertical keels; retrieving the above-mentioned sheet materials from the above-mentioned library, and according to the material of the above-mentioned sheet materials and the position parameters of the above-mentioned sheet materials, forming a plurality of the above-mentioned sheet materials on the surface of the above-mentioned keel framework and the surface of the above-mentioned guide wall to form the above-mentioned keel partition wall model.
[0042] According to another specific embodiment of the present application, the above-mentioned family library further includes a hole frame, the above-mentioned design parameters further include the position parameters of the above-mentioned hole frame, the above-mentioned connecting members further include a plurality of third connecting members. After generating the stud partition wall model according to the above-mentioned family library and the above-mentioned design parameters, the above-mentioned method further includes: removing the above-mentioned board at the position corresponding to the above-mentioned hole frame on the above-mentioned stud partition wall model; retrieving the above-mentioned hole frame from the above-mentioned family library, and forming the above-mentioned hole frame on the above-mentioned stud partition wall model with the removed board according to the position parameters of the above-mentioned hole frame, the above-mentioned hole frame including a second stud border; retrieving the above-mentioned board from the above-mentioned family library, and forming the above-mentioned board on the surface in the first direction of the above-mentioned hole frame according to the material of the above-mentioned board and the position parameters of the above-mentioned board, the first direction being parallel to the thickness direction of the above-mentioned stud partition wall model; retrieving the above-mentioned third connecting members from the above-mentioned family library, and forming a plurality of the above-mentioned third connecting members at the intersections of the above-mentioned second stud border and the above-mentioned stud frame and at the intersections of the above-mentioned second stud border and the above-mentioned board. This ensures that the above-mentioned stud partition wall model with a hole is established relatively quickly and vividly, and further ensures that the established stud partition wall model with a hole is basically consistent with the actual stud partition wall.
[0043] In the actual application process, the stud partition wall may include corners. Figures 2 to 4 It shows that the partition wall has three different corners. In this case, in order to further ensure that the stud partition wall model corresponding to the above-mentioned stud partition wall is basically consistent with the actual situation, the above-mentioned family library further includes corner guards, joint paper bags and sealant. After retrieving the above-mentioned boards from the above-mentioned family library and forming a plurality of the above-mentioned boards on the surface of the above-mentioned stud frame according to the material of the above-mentioned boards and the position parameters of the above-mentioned boards, the above-mentioned method further includes: retrieving the above-mentioned horizontal studs from the above-mentioned family library, and generating studs between two boards at the above-mentioned corners or the above-mentioned intersection positions according to the number of the above-mentioned studs, the dimensional data of the above-mentioned studs and the position parameters of the above-mentioned studs, the above-mentioned studs being C-shaped studs 302 to form the above-mentioned stud partition wall model; constructing the above-mentioned corner guards at the external corners 300 of the above-mentioned stud partition wall model; constructing the above-mentioned joint paper bags and the above-mentioned sealant at the internal corners 301 of the above-mentioned stud partition wall model to obtain the Figures 5 to 7 schematic diagram of the stud partition wall model as shown in Figure 5 corresponding to Figure 2 and Figure 6 corresponding to Figure 3 and Figure 7 corresponding to Figure 4 and so on.
[0044] It should be noted that if the generated above-mentioned C-shaped studs conflict with the original above-mentioned stud frame, that is, the generated above-mentioned C-shaped studs have an intersecting part with the above-mentioned stud frame, then the above-mentioned C-shaped studs are not generated at this time.
[0045] The embodiment of the present application further provides a device for constructing a keel partition wall model. It should be noted that the device for constructing a keel partition wall model in the embodiment of the present application can be used to execute the method for constructing a keel partition wall model provided by the embodiment of the present application. The following introduces the device for constructing a keel partition wall model provided by the embodiment of the present application.
[0046] Figure 8 It is a schematic diagram of the device for constructing a keel partition wall model according to the embodiment of the present application. As Figure 8 shown, the device includes a first construction unit 10, a determination unit 20, and a first generation unit 30. Among them, the first construction unit 10 is used to construct a family library of the keel partition wall. The family library at least includes keels, plates, and connectors. The keels include horizontal keels and vertical keels. The determination unit 20 is used to determine design parameters. The design parameters at least include the number of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors, and the position parameters of the connectors. The first generation unit 30 is used to generate a keel partition wall model according to the family library and the design parameters.
[0047] For the above-mentioned device for constructing a keel partition wall model, the family library of the keel partition wall is constructed by the first construction unit. The family library at least includes keels, plates, and connectors. The keels include horizontal keels and vertical keels. The design parameters are determined by the determination unit. The design parameters at least include the number of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors, and the position parameters of the connectors. The first generation unit generates a keel partition wall model according to the family library and the design parameters. For the above device of the present application, through the constructed family library and the determined design parameters, the keel partition wall model can be established more vividly, ensuring that the constructed keel partition wall model is basically consistent with the actual keel partition wall, ensuring that the keel partition wall model fits well with the actual engineering situation, and preferably avoiding the problem that the keel partition wall model established in the prior art is quite different from the actual engineering situation.
[0048] In a specific embodiment, the keel is a light steel keel, the keel partition wall model is a light steel keel partition wall model, the plate is a gypsum board, and the connectors include bolts and nails. Of course, the keel can also be a keel of other materials, the keel partition wall model can also be a keel partition wall model of other materials, the plate can also be a plate of other materials, and the connectors can also include other types of connectors.
[0049] According to a specific embodiment of the present application, the above-mentioned connecting member includes a plurality of first connecting members, and the above-mentioned first generating unit includes a first constructing subunit, a first forming subunit, and a second forming subunit. Among them, the above-mentioned first constructing subunit is used to retrieve the above-mentioned horizontal keels and the above-mentioned vertical keels from the above-mentioned family library, and construct a keel framework according to the number of the above-mentioned keels, the dimensional data of the above-mentioned keels, and the position parameters of the above-mentioned keels. The above-mentioned keel framework includes a plurality of the above-mentioned horizontal keels and a plurality of the above-mentioned vertical keels that intersect; the above-mentioned first forming subunit is used to retrieve the above-mentioned first connecting members from the above-mentioned family library, and form a plurality of the above-mentioned first connecting members on the above-mentioned keel framework according to the type of the above-mentioned connecting members and the position parameters of the above-mentioned connecting members. The above-mentioned first connecting members are used to fix the intersections of the above-mentioned horizontal keels and the above-mentioned vertical keels; the above-mentioned second forming subunit is used to retrieve the above-mentioned plates from the above-mentioned family library, and form a plurality of the above-mentioned plates on the surface of the above-mentioned keel framework according to the material of the above-mentioned plates and the position parameters of the above-mentioned plates, so as to form the above-mentioned keel partition wall model. By retrieving the above-mentioned horizontal keels, the above-mentioned vertical keels, the above-mentioned first connecting members, and the above-mentioned plates from the above-mentioned family library, and establishing the above-mentioned keel partition wall model according to the above-mentioned design parameters, it further ensures that the constructed above-mentioned keel partition wall model is basically consistent with the actual keel partition wall, further ensures that the established keel partition wall model fits well with the actual engineering situation, and at the same time, ensures that the speed of establishing the above-mentioned keel partition wall model is relatively fast.
[0050] In order to further ensure the relatively fast and vivid establishment of the above-mentioned keel framework and facilitate the subsequent establishment of the above-mentioned keel partition wall model, according to another specific embodiment of the present application, the above-mentioned first constructing subunit includes a first constructing module and a first forming module. Among them, the above-mentioned first constructing module is used to construct a first keel frame according to the above-mentioned design parameters and the retrieved above-mentioned horizontal keels and the above-mentioned vertical keels. The above-mentioned first keel frame includes a first horizontal keel, a first vertical keel, a second horizontal keel, and a second vertical keel that are connected in sequence end to end; the above-mentioned first forming module is used to construct a plurality of other horizontal keels and a plurality of other vertical keels that intersect in the above-mentioned first keel frame to form the above-mentioned keel framework. The above-mentioned other horizontal keels are the other horizontal keels among the above-mentioned horizontal keels except the above-mentioned first horizontal keel and the above-mentioned second horizontal keel, and the above-mentioned other vertical keels are the other vertical keels among the above-mentioned vertical keels except the above-mentioned first vertical keel and the above-mentioned second vertical keel.
[0051] In yet another specific embodiment of the present application, the above-mentioned connecting member further includes a plurality of second connecting members. The above-mentioned second forming subunit includes a second creating module, a control module, a laying module, and a second forming module. Among them, the above-mentioned second creating module is used to construct a plurality of the above-mentioned boards according to the above-mentioned design parameters and the retrieved above-mentioned boards; the above-mentioned control module is used to control the splicing of a plurality of the above-mentioned boards so that the size of the spliced above-mentioned boards is equal to the size of the above-mentioned keel frame; the above-mentioned laying module is used to lay the spliced above-mentioned boards on the surface of the above-mentioned keel frame; the above-mentioned second forming module is used to retrieve the above-mentioned second connecting members from the above-mentioned family library, and form a plurality of the above-mentioned second connecting members on the center lines of the above-mentioned keels of the above-mentioned keel frame according to the type of the above-mentioned connecting member and the position parameters of the above-mentioned connecting member. The above-mentioned second connecting members are used to fix the spliced boards and the above-mentioned keel frame. This further ensures that the above-mentioned keel partition wall model can be established relatively quickly and vividly, and further avoids the problem that the keel partition wall model established in the prior art has a large difference from the actual engineering situation.
[0052] In the actual application process, a guide wall is generally provided in a waterproof room. In order to ensure that the above-mentioned keel partition wall model established in this case is relatively vivid and further ensure that the established keel partition wall model is more in line with the actual engineering situation, in a specific embodiment of the present application, the above-mentioned family library further includes a guide wall, and the above-mentioned design parameters further include the size parameters and position parameters of the above-mentioned guide wall. The above-mentioned first generating unit includes a second constructing subunit, a third constructing subunit, a third forming subunit, and a fourth forming subunit. Among them, the above-mentioned second constructing subunit is used to retrieve the above-mentioned guide wall from the above-mentioned family library and construct the above-mentioned guide wall according to the size parameters and position parameters of the above-mentioned guide wall; the above-mentioned third constructing subunit is used to retrieve the above-mentioned horizontal keels and vertical keels from the above-mentioned family library, and construct a keel frame on the above-mentioned guide wall according to the number of the above-mentioned keels, the size data of the above-mentioned keels, and the position parameters of the above-mentioned keels. The above-mentioned keel frame includes a plurality of the above-mentioned horizontal keels and a plurality of the above-mentioned vertical keels that intersect; the above-mentioned third forming subunit is used to retrieve the above-mentioned first connecting members from the above-mentioned family library and form a plurality of the above-mentioned first connecting members on the above-mentioned keel frame according to the type of the above-mentioned connecting member and the position parameters of the above-mentioned connecting member. The above-mentioned first connecting members are used to fix the intersections of the above-mentioned horizontal keels and vertical keels; the above-mentioned fourth forming subunit is used to retrieve the above-mentioned boards from the above-mentioned family library and form a plurality of the above-mentioned boards on the surface of the above-mentioned keel frame and the surface of the above-mentioned guide wall according to the material of the above-mentioned boards and the position parameters of the above-mentioned boards, so as to form the above-mentioned keel partition wall model.
[0053] According to another specific embodiment of the present application, the above-mentioned family library further includes a hole frame, the above-mentioned design parameters further include the position parameters of the above-mentioned hole frame, the above-mentioned connecting members further include a plurality of third connecting members, and the above-mentioned device further includes a removing unit, a first forming unit, a second forming unit, and a third forming unit. Among them, the above-mentioned removing unit is used to remove the above-mentioned board at the corresponding position of the above-mentioned hole frame on the above-mentioned stud partition wall model after generating the stud partition wall model according to the above-mentioned family library and the above-mentioned design parameters; the above-mentioned first forming unit is used to retrieve the above-mentioned hole frame from the above-mentioned family library and form the above-mentioned hole frame on the above-mentioned stud partition wall model with the above-mentioned board removed according to the position parameters of the above-mentioned hole frame, and the above-mentioned hole frame includes a second stud border; the above-mentioned second forming unit is used to retrieve the above-mentioned board from the above-mentioned family library and form the above-mentioned board on the surface in the first direction of the above-mentioned hole frame according to the material of the above-mentioned board and the position parameters of the above-mentioned board, and the first direction is parallel to the thickness direction of the above-mentioned stud partition wall model; the above-mentioned third forming unit is used to retrieve the above-mentioned third connecting members from the above-mentioned family library and form a plurality of the above-mentioned third connecting members at the intersections of the above-mentioned second stud border and the above-mentioned stud frame and at the intersections of the above-mentioned second stud border and the above-mentioned board according to the type of the above-mentioned connecting members and the position parameters of the above-mentioned connecting members. This ensures that the above-mentioned stud partition wall model with a hole can be established relatively quickly and vividly, and further ensures that the established stud partition wall model with a hole is basically consistent with the actual stud partition wall.
[0054] In the actual application process, the stud partition wall may include corners. Figures 2 to 4 It shows that the partition wall has three different corners. In this case, in order to further ensure that the above-mentioned stud partition wall model corresponding to the stud partition wall is basically consistent with the actual situation, the above-mentioned family library further includes corner guards, joint paper bags, and sealant, and the above-mentioned device further includes a second generating unit, a second constructing unit, and a third constructing unit. Among them, the above-mentioned second generating unit is used to retrieve the above-mentioned board from the above-mentioned family library and form a plurality of the above-mentioned boards on the surface of the above-mentioned stud frame according to the material of the above-mentioned board and the position parameters of the above-mentioned board, and then retrieve the above-mentioned horizontal stud from the above-mentioned family library and generate studs between two boards at the above-mentioned corner or the above-mentioned intersection position according to the number of the above-mentioned studs, the dimensional data of the above-mentioned studs, and the position parameters of the above-mentioned studs. The above-mentioned studs are C-shaped studs 302 to form the above-mentioned stud partition wall model; the above-mentioned second constructing unit is used to construct the above-mentioned corner guards at the external corners 300 of the above-mentioned stud partition wall model; the above-mentioned third constructing unit is used to construct the above-mentioned joint paper bags and the above-mentioned sealant at the internal corners 301 of the above-mentioned stud partition wall model to obtain the schematic diagram of the stud partition wall model as shown in Figures 5 to 7 shown, where Figure 5 corresponds to Figure 2 and Figure 6 corresponds to Figure 3 and.Figure 7 corresponds to Figure 4 .
[0055] It should be noted that if the above-mentioned C-shaped keel generated conflicts with the original above-mentioned keel framework, that is, there is an intersecting part between the above-mentioned C-shaped keel generated and the above-mentioned keel framework, then the above-mentioned C-shaped keel is not generated at this time.
[0056] The device for constructing the above-mentioned keel partition wall model includes a processor and a memory. The above-mentioned units are all stored in the memory as program units, and the corresponding functions are realized by the processor executing the above-mentioned program units stored in the memory.
[0057] The processor contains a kernel, and the kernel retrieves the corresponding program units from the memory. One or more kernels can be set, and by adjusting the kernel parameters, the problem that the difference between the keel partition wall model established in the prior art and the actual engineering situation is relatively large can be solved.
[0058] The memory may include non-permanent memory in a computer-readable medium, forms such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM, and the memory includes at least one storage chip.
[0059] An embodiment of the present invention provides a computer-readable storage medium, on which a program is stored, and when the program is executed by a processor, the above-mentioned method for constructing a keel partition wall model is realized.
[0060] An embodiment of the present invention provides a processor, and the above-mentioned processor is used to run a program. Among them, when the above-mentioned program runs, the above-mentioned method for constructing a keel partition wall model is executed.
[0061] An embodiment of the present invention provides a device, the device includes a processor, a memory, and a program stored on the memory and executable on the processor. When the processor executes the program, at least the following steps are realized:
[0062] Step S101, construct a family library of the keel partition wall. The above-mentioned family library includes at least keels, plates and connectors. The above-mentioned keels include horizontal keels and vertical keels;
[0063] Step S102, determine the design parameters. The above-mentioned design parameters include at least the number of the above-mentioned keels, the dimension data of the above-mentioned keels, the position parameters of the above-mentioned keels, the material of the above-mentioned plates, the position parameters of the above-mentioned plates, the type of the above-mentioned connectors and the position parameters of the above-mentioned connectors;
[0064] Step S103, generate a keel partition wall model according to the above-mentioned family library and the above-mentioned design parameters.
[0065] The device in the text can be a server, a PC, a PAD, a mobile phone, etc.
[0066] The present application also provides a computer program product which, when executed on a data processing device, is adapted to execute a program initialized with at least the following method steps:
[0067] Step S101: Construct a family library for the keel partition wall. The family library at least includes keels, plates, and connectors. The keels include horizontal keels and vertical keels.
[0068] Step S102: Determine the design parameters. The design parameters at least include the quantity of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors, and the position parameters of the connectors.
[0069] Step S103: Generate a keel partition wall model according to the family library and the design parameters.
[0070] In the above embodiments of the present invention, the descriptions of the various embodiments have their own emphases. For parts not detailed in a certain embodiment, reference may be made to the relevant descriptions of other embodiments.
[0071] In several embodiments provided by the present application, it should be understood that the disclosed technical content can be implemented in other ways. Among them, the device embodiments described above are only illustrative. For example, the above-mentioned unit division can be a logical function division. In actual implementation, there can be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection to each other can be through some interfaces. The indirect coupling or communication connection of units or modules can be in an electrical or other form.
[0072] The units described as separate components may or may not be physically separated. The components displayed as units may or may not be physical units, that is, they can be located in one place or distributed to multiple units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0073] In addition, in each embodiment of the present invention, the functional units can be integrated in a processing unit, or each unit can exist physically alone, or two or more units can be integrated in one unit. The above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units.
[0074] When the above integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the above methods in various embodiments of the present invention. The aforementioned storage medium includes: various media such as USB flash drives, read-only memories (ROM, Read-Only Memory), random access memories (RAM, Random Access Memory), mobile hard disks, magnetic disks, or optical discs that can store program codes.
[0075] In order to enable those skilled in the art to more accurately and intuitively understand the technical solution of the present application, the following will be described in conjunction with specific embodiments.
[0076] Embodiment
[0077] Generate a stud partition wall model according to the following process:
[0078] According to the room type selected by the user, the room types include ordinary rooms without a guide wall and waterproof rooms with a guide wall, and it is possible to determine whether to generate a guide wall. When the room type is a waterproof room such as a kitchen or a bathroom, a 50-mm-high concrete guide wall is generated above the bottom floor slab 103 and below the first horizontal stud 105. The thickness of the guide wall is determined according to the thickness of the stud partition wall composed of the stud frame and the board. The thickness of the guide wall is greater than the thickness of the stud partition wall and is an integer multiple of 10. For example: when the thickness of the stud partition wall is 103 mm, the guide wall is 110 mm thick, and the center line of the stud partition wall is aligned with the center line of the guide wall. When the room type is an ordinary room, by calling the above-mentioned family library, the first horizontal stud 105 (i.e., the bottom stud) and the second horizontal stud 106 (i.e., the top stud) that are in contact with the bottom floor slab 103 and the top floor slab 104 are directly generated. The first horizontal stud is fixed to the bottom floor slab by M8 expansion bolts or nails, and the second horizontal stud is fixed to the top floor slab. The placement spacing of the M8 expansion bolts is 600 mm, the placement spacing of the nails is 200 mm, and the distance from the first bolt to the end of the horizontal stud is 50 mm.
[0079] An upper and lower joint and a sealing strip are provided between the top floor slab and the second horizontal keel, and between the bottom floor slab and the first horizontal keel. The sealing strip is a rubber strip, which can be selected according to the seismic fortification intensity. Generally, when the seismic fortification intensity is 7 degrees or less, a 6-mm space is left between the second horizontal keel and the top floor slab to generate a rectangular sealing strip with a height of 20 mm, the same width as the keel partition wall, and the same length as the second horizontal keel; when the seismic fortification intensity is 8 degrees or more, a 20-mm space is left between the second horizontal keel and the top floor slab to generate a rectangular sealing strip with a height of 20 mm, the same width as the keel partition wall, and the same length as the second horizontal keel.
[0080] According to the keel spacing in the above design parameters, determine the positions where the vertical keels are generated. It is required that the plate surface of the vertical keels faces outward at the wall edge positions, as Figure 9 shown. The first vertical keel 100 and the second vertical keel 101 are generated at the starting and ending parts. The circled part is to make up the spacing of the last vertical keel. The spacing of the other vertical keels 102 in the dotted part can be flexibly set according to the user's selection. The keel framework as shown in Figure 10 is obtained.
[0081] Call the first connecting piece from the above family library. The first connecting piece can be a screw. According to the above design parameters, generate screws to fix the vertical keels on the horizontal keels. Each vertical keel is fixed to the first horizontal keel and the second horizontal keel with screws of model ST4.2X35, and each vertical keel corresponds to two screws.
[0082] According to the design parameters, generate boards arranged from left to right. The material of the boards is gypsum board. The extra gypsum board is directly cut off. For example, for a 3000-mm wall surface, the gypsum boards are arranged according to 1200 mm. There are two 1200 mm from left to right, and 600 mm remains. The extra gypsum board is cut off.
[0083] Generate a plurality of second connecting pieces along the center line position of the keel at the part where the board is in contact with the keel. The second connecting piece can be a screw. The screws are arranged horizontally and vertically with a spacing of 150 mm, and the screws are 10 mm away from the edge of the board.
[0084] When it is necessary to generate the opening frame of the keel partition wall model, as Figure 11 shown, adjust the keel arrangement at the position of the opening frame according to the size of the door and window opening. It is necessary to generate two vertical keels at the left and right edges of the opening, and two horizontal keels at the upper and lower edges of the opening to form the second keel frame 200. Then, retrieve the board from the family library and form the board on the surface of the opening frame in the first direction. The first direction is parallel to the thickness direction of the keel partition wall model.
[0085] Generate second connecting pieces to fix the second keel frame and the board. The second connecting piece can be a screw, and the board can be a gypsum board. The spacing of the screws on the keel frame is 300 mm.
[0086] When the keel partition wall model includes corners, there are the following three cases. At the corners of the keel partition wall model, a seam paper bag and sealant are generated at the inside corner, and a metal L-shaped corner guard is generated at the outside corner; at the T-shaped intersection of the keel partition wall model, a seam paper bag and sealant are generated at the inside corner, a metal L-shaped corner guard is generated at the outside corner, and a C-shaped keel is generated between the two boards at the T-shaped intersection. When the generated C-shaped keel intersects with the original keel framework, the C-shaped keel is not generated; a C-shaped keel is generated between the two boards at the cross-shaped intersection of the keel partition wall model. When the generated C-shaped keel intersects with the original keel framework, the C-shaped keel is not generated. In this way, a complete keel partition wall model is obtained.
[0087] Of course, the above first connector, the above second connector, the above board, and the above keel can also be components of other types and other materials. The position parameters of the above first connector, the above second connector, and the above keel can be adjusted according to the actual situation. The size and shape of the above sealing strip can also be other sizes and shapes, and the size data of the above guide wall can also be flexibly selected according to the actual situation.
[0088] From the above description, it can be seen that the above embodiments of the present application achieve the following technical effects:
[0089] 1). The method for constructing the keel partition wall model of the present application. First, construct a family library of the keel partition wall. The above family library includes at least keels, boards, and connectors. The above keels include horizontal keels and vertical keels; then, determine the design parameters. The above design parameters include at least the quantity of the above keels, the size data of the above keels, the position parameters of the above keels, the material of the above boards, the position parameters of the above boards, the type of the above connectors, and the position parameters of the above connectors; finally, generate a keel partition wall model according to the above family library and the above design parameters. The above method of the present application can relatively vividly establish the above keel partition wall model by constructing the above family library and determining the above design parameters, ensuring that the constructed above keel partition wall model is basically consistent with the actual keel partition wall, ensuring that the keel partition wall model fits well with the actual engineering situation, and preferably avoiding the problem that the keel partition wall model established in the prior art has a large difference from the actual engineering situation.
[0090] 2) The device for constructing the keel partition wall model of the present application constructs the family library of the keel partition wall through the above-mentioned first construction unit. The above-mentioned family library at least includes keels, plates and connectors. The above-mentioned keels include horizontal keels and vertical keels; the above-mentioned design parameters are determined through the above-mentioned determination unit. The above-mentioned design parameters at least include the quantity of the above-mentioned keels, the dimensional data of the above-mentioned keels, the position parameters of the above-mentioned keels, the material of the above-mentioned plates, the position parameters of the above-mentioned plates, the type of the above-mentioned connectors and the position parameters of the above-mentioned connectors; the keel partition wall model is generated through the above-mentioned first generation unit according to the above-mentioned family library and the above-mentioned design parameters. With the above-mentioned family library constructed and the above-mentioned design parameters determined by the device of the present application, the above-mentioned keel partition wall model can be established more vividly, ensuring that the constructed above-mentioned keel partition wall model is basically consistent with the actual keel partition wall, ensuring that the keel partition wall model fits well with the actual engineering situation, and preferably avoiding the problem that the keel partition wall model established in the prior art has a large difference from the actual engineering situation.
[0091] The foregoing are only the preferred embodiments of the present application and are not intended to limit the present application. For those skilled in the art, various modifications and changes can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.
Claims
1. A method for constructing a keel partition wall model, characterized in that, the keel partition wall is used to connect the top floor slab and the bottom floor slab, and the method includes: Construct a family library of the keel partition wall, the family library at least includes keels, plates and connectors, the keels include horizontal keels and vertical keels, and the connectors include a plurality of first connectors; Determine the design parameters, the design parameters at least include the number of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors and the position parameters of the connectors; According to the family library and the design parameters, generate a keel partition wall model, including: Retrieve the horizontal keels and the vertical keels from the family library, and construct a keel framework according to the number of the keels, the dimensional data of the keels and the position parameters of the keels, the keel framework includes a plurality of the horizontal keels and a plurality of the vertical keels that intersect; Retrieve the first connectors from the family library, and form a plurality of the first connectors on the keel framework according to the type of the connectors and the position parameters of the connectors, the first connectors are used to fix the intersections of the horizontal keels and the vertical keels; Retrieve the plates from the family library, and form a plurality of the plates on the surface of the keel framework according to the material of the plates and the position parameters of the plates, so as to form the keel partition wall model; wherein, retrieving the horizontal keels and the vertical keels from the family library, and constructing a keel framework according to the number of the keels, the dimensional data of the keels and the position parameters of the keels, includes: Construct a first keel border according to the design parameters and the retrieved horizontal keels and vertical keels, the first keel border includes a first horizontal keel, a first vertical keel, a second horizontal keel and a second vertical keel that are sequentially connected end to end; Construct a plurality of other horizontal keels and a plurality of other vertical keels that intersect in the first keel border to form the keel framework, the other horizontal keels are the other horizontal keels except the first horizontal keel and the second horizontal keel among the horizontal keels, and the other vertical keels are the other vertical keels except the first vertical keel and the second vertical keel among the vertical keels.
2. The method according to claim 1, characterized in that, the connectors further include a plurality of second connectors, retrieving the plates from the family library, and forming a plurality of the plates on the surface of the keel framework according to the material of the plates and the position parameters of the plates, so as to form the keel partition wall model, includes: Construct a plurality of the plates according to the design parameters and the retrieved plates; Control the splicing of the plurality of the plates so that the size of the spliced plates is equal to the size of the keel framework; Lay the spliced plates on the surface of the keel framework. Retrieve the second connecting member from the family library, and form a plurality of the second connecting members on the center line of the keel of the keel framework according to the type of the connecting member and the position parameter of the connecting member. The second connecting member is used to fix the spliced board and the keel framework.
3. The method according to claim 1, wherein, the family library further includes a guide wall, and the design parameter further includes the dimension parameter and the position parameter of the guide wall, generating a keel partition wall model according to the family library and the design parameter, including: retrieve the guide wall from the family library, and construct the guide wall according to the dimension parameter and the position parameter of the guide wall; retrieve the horizontal keel and the vertical keel from the family library, and construct a keel framework on the guide wall according to the quantity of the keel, the dimension data of the keel and the position parameter of the keel. The keel framework includes a plurality of the horizontal keels and a plurality of the vertical keels that intersect; retrieve the first connecting member from the family library, and form a plurality of the first connecting members on the keel framework according to the type of the connecting member and the position parameter of the connecting member. The first connecting member is used to fix the intersection of the horizontal keel and the vertical keel; retrieve the board from the family library, and form a plurality of the boards on the surface of the keel framework and the surface of the guide wall according to the material of the board and the position parameter of the board, so as to form the keel partition wall model.
4. The method according to claim 1, wherein, the family library further includes an opening frame, the design parameter further includes the position parameter of the opening frame, and the connecting member further includes a plurality of third connecting members, after generating the keel partition wall model according to the family library and the design parameter, the method further includes: remove the board at the corresponding position of the opening frame on the keel partition wall model; retrieve the opening frame from the family library, and form the opening frame on the keel partition wall model from which the board is removed according to the position parameter of the opening frame. The opening frame includes a second keel border; retrieve the board from the family library, and form the board on the surface of the opening frame in the first direction. The first direction is parallel to the thickness direction of the keel partition wall model; retrieve the third connecting member from the family library, and form a plurality of the third connecting members at the intersection of the second keel border and the keel framework and at the intersection of the second keel border and the board according to the type of the connecting member and the position parameter of the connecting member.
5. A device for constructing a keel partition wall model, wherein, the keel partition wall is used to connect the top floor slab and the bottom floor slab, and the device includes: a first construction unit for constructing a family library of the keel partition wall. The family library at least includes keels, boards and connecting members. The keels include horizontal keels and vertical keels, and the connecting members include a plurality of first connecting members; A determination unit for determining design parameters, where the design parameters at least include the number of the keels, the dimensional data of the keels, the position parameters of the keels, the material of the plates, the position parameters of the plates, the type of the connectors, and the position parameters of the connectors; A first generation unit for generating a keel partition wall model according to the family library and the design parameters, including A first construction subunit for retrieving the horizontal keels and the vertical keels from the family library and constructing a keel framework according to the number of the keels, the dimensional data of the keels, and the position parameters of the keels, where the keel framework includes a plurality of the horizontal keels and a plurality of the vertical keels that intersect; A first forming subunit for retrieving the first connectors from the family library and forming a plurality of the first connectors on the keel framework according to the type of the connectors and the position parameters of the connectors, where the first connectors are used to fix the intersections of the horizontal keels and the vertical keels; A second forming subunit for retrieving the plates from the family library and forming a plurality of the plates on the surface of the keel framework according to the material of the plates and the position parameters of the plates to form the keel partition wall model; Among them, the first construction subunit includes: A first construction module for constructing a first keel border according to the design parameters and the retrieved horizontal keels and vertical keels, where the first keel border includes a first horizontal keel, a first vertical keel, a second horizontal keel, and a second vertical keel that are connected in sequence end to end; A first forming module for constructing a plurality of other horizontal keels and a plurality of other vertical keels that intersect in the first keel border to form the keel framework, where the other horizontal keels are the other horizontal keels except the first horizontal keel and the second horizontal keel among the horizontal keels, and the other vertical keels are the other vertical keels except the first vertical keel and the second vertical keel among the vertical keels.
6. A computer-readable storage medium, characterized in that the computer-readable storage medium includes a stored program, where the program executes the method according to any one of claims 1 to 4.
7. A processor, characterized in that the processor is used to run a program, where the program executes the method according to any one of claims 1 to 4 when running.
8. An electronic device, characterized in that it includes: one or more processors, a memory, a display device, and one or more programs, where the one or more programs are stored in the memory and are configured to be executed by the one or more processors, and the one or more programs include a method for executing any one of claims 1 to 4.
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