Method for manufacturing quality sample of dry-hung curtain wall

By creating component models of dry-hanging curtain wall quality samples using BIM modeling technology and further refining them, the problems of low efficiency and low accuracy in existing technologies have been solved, enabling precise control of materials and shortening the time required.

CN119557945BActive Publication Date: 2025-11-07CHINA HUAYE GROUP
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Patent Information

Application Number
CN202411475645.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-11-07
Estimated Expiration
2044-10-22

AI Technical Summary

Technical Problem

Existing methods for creating quality samples of dry-hanging curtain walls are inefficient, time-consuming, not intuitive, have low accuracy, and easily lead to material waste.

Method used

BIM modeling technology is used to create component models of dry-hanging curtain wall quality samples. Through detailed processing, the spacing of the keel model and the position of the connectors are determined. The models are then assembled, layered, labeled with data, and rendered to generate a three-dimensional data model.

Benefits of technology

It improved the intuitiveness and accuracy of sample making, reduced material waste, and shortened processing time.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a dry-hanging curtain wall quality sample manufacturing method, and belongs to the technical field of building construction. According to sample drawings, a component model of a dry-hanging curtain wall quality sample is created by using BIM modeling technology. According to the actual size of the quality sample, the spacing of the keel model and the position of the connecting piece model that conform to the actual size of the sample are determined by deepening the processing of the keel model, the keel fixing part model and the connecting piece model. Then, based on the spacing of the keel model, the keel model is assembled on the base wall structure model, and the obtained sample skeleton model is subjected to layering, data labeling and rendering processing, so as to obtain a three-dimensional data model of the dry-hanging curtain wall quality sample, thereby guiding the manufacturing of the dry-hanging curtain wall quality sample, enabling the sample processing and manufacturing personnel to intuitively and quickly understand the structure size of the dry-hanging curtain wall quality sample, more accurately controlling the material consumption, effectively avoiding material waste, effectively shortening the sample processing time and reducing material and manpower.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building construction, more specifically, to a dry hanging curtain wall quality sample manufacturing method. BACKGROUND

[0002] The dry hanging curtain wall is a decorative outer wall enclosure structure on the surface of a building. In the process of building engineering construction, in order to improve construction quality, speed up engineering construction, and improve labor productivity, a dry hanging curtain wall quality sample needs to be manufactured in advance, so as to provide technical guidance for subsequent batch production and construction of dry hanging curtain walls.

[0003] At present, in general cases, the dry hanging curtain wall quality sample manufacturing method is to use drawings and oral expressions to communicate between technical personnel and the production factory of the quality sample, that is, the technical personnel explain the sample drawings to the production factory, and then the sample manufacturing personnel perform manual lofting and manufacturing.

[0004] This quality sample manufacturing method is relatively difficult to communicate when manufacturing key or complex parts of the sample, and even requires technical personnel to guide on site. Therefore, this method has problems such as manual lofting, low efficiency, long time, non-intuitive, material waste, and the like. SUMMARY

[0005] In view of the above problems, the present application aims to provide a dry hanging curtain wall quality sample manufacturing method to solve the problems of low efficiency, long time, non-intuitive, low accuracy, and material waste in the prior art, which are caused by the method of using sample drawings to guide the processing and manufacturing of dry hanging curtain wall quality samples.

[0006] The present application provides a dry hanging curtain wall quality sample manufacturing method, which comprises the following steps:

[0007] According to the sample drawing, a component model is obtained by creating a model of each component of the dry hanging curtain wall quality sample to be manufactured through BIM modeling technology; wherein the component model comprises a keel model, a keel fixing part model, a connecting part model, and a base wall structure model;

[0008] Based on the actual size of the dry hanging curtain wall quality sample to be manufactured, the keel model, the keel fixing part model, and the connecting part model are further processed to determine the spacing between the keel models, the position of the keel fixing part model on the base wall structure model, and the position of the connecting part model on the keel model;

[0009] According to the spacing between the keel models, the positions of the keel fixing member models on the base wall structure model, and the positions of the connecting member models on the keel models, keel model assembly on the base wall structure model and the connecting member model installation process on the keel model are performed to obtain a sample framework model;

[0010] According to the sample drawing, a layered processing is performed on the base wall structure model in the sample framework model to obtain a sample primary model;

[0011] Data labeling processing is performed on each layer of the base wall structure model of the sample primary model and the keel model, the keel fixing member model and the connecting member model to obtain a data sample model;

[0012] The data sample model is rendered to obtain a three-dimensional data model of the to-be-made dry-hanging curtain wall quality sample;

[0013] According to the three-dimensional data model, the to-be-made dry-hanging curtain wall quality sample is made.

[0014] In addition, preferably, according to the sample drawing, a model of each component of the to-be-made dry-hanging curtain wall quality sample is created by BIM modeling technology to obtain a component model, including:

[0015] According to the sample drawing, size data of each component of the to-be-made dry-hanging curtain wall quality sample is counted;

[0016] According to the counted size data of each component, a model of each component is made by BIM modeling technology to obtain a component model.

[0017] In addition, preferably, according to the sample drawing, size data of each component of the to-be-made dry-hanging curtain wall quality sample is counted, including:

[0018] From the sample drawing, component names and position information of each component of the to-be-made dry-hanging curtain wall quality sample are obtained, and the component names and position information of each component are loaded into a preset table to obtain a primary component information table;

[0019] Corresponding to the component names and position information, corresponding size data is extracted from the sample drawing, and the size data is loaded into the primary component information table to complete the size data counting of each component of the to-be-made dry-hanging curtain wall quality sample.

[0020] Further, preferably, the actual size of the dry-hanging curtain wall quality sample to be made is used to further process the keel models, the keel fixing member models and the connecting member models to determine the spacing between the keel models, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models, including:

[0021] According to the actual size of the dry-hanging curtain wall quality sample to be made, the keel models are lofted on the base wall structure model;

[0022] Based on the results of the lofting and preset sample making requirements, the spacing between the keel models and the positions of the connecting member models on the keel models are determined;

[0023] According to the spacing between the keel models, the positions of the keel fixing member models on the base wall structure model are determined.

[0024] Further, preferably, the keel models are assembled on the base wall structure model and the connecting member models are installed on the keel models according to the spacing between the keel models, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models to obtain a sample skeleton model, including:

[0025] According to the spacing between the keel models, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models, a simulated keel assembly process is performed to obtain a keel assembly sequence that meets preset construction requirements;

[0026] According to the keel assembly sequence, the keel models are assembled on the base wall structure model and a keel model assembly sequence flow data is generated;

[0027] The sample skeleton model is obtained by combining the model obtained after the keel models are assembled and the keel model assembly sequence flow data.

[0028] Further, preferably, the base wall structure model in the sample skeleton model is processed layer by layer according to the sample drawing to obtain a sample primary model, including:

[0029] The base wall structure model in the sample skeleton model is processed layer by layer according to the sample drawing in a preset layering sequence;

[0030] Layer structure annotations are added to each layer of the base wall structure model after the layering process to obtain a sample primary model.

[0031] In addition, preferably, in the process of layering the base wall structure model in the sample skeleton model according to the sample drawing paper in the preset layering order,

[0032] In addition, preferably, in the process of layering the base wall structure model in the sample skeleton model according to the sample drawing paper in the preset layering order,

[0033] In addition, preferably, in the process of layering the base wall structure model in the sample skeleton model according to the sample drawing paper in the preset layering order,

[0034] The data annotation processing includes size data annotation and material data annotation.

[0035] In addition, preferably, in the process of layering the base wall structure model in the sample skeleton model according to the sample drawing paper in the preset layering order,

[0036] In addition, preferably, in the process of layering the base wall structure model in the sample skeleton model according to the sample drawing paper in the preset layering order,

[0037] In addition, preferably, the rendering software is Enscape.

[0038] From the above technical solutions, it can be seen that the dry-hanging curtain wall quality sample manufacturing method provided by the present application creates a component model of the dry-hanging curtain wall quality sample to be manufactured by using BIM modeling technology according to a sample drawing paper, then deepens the processing of the keel model, the keel fixing part model and the connecting part model according to the actual size of the quality sample, to determine the keel model spacing and the connecting part model position that meet the actual size of the sample, and then assembles the keel model on the base wall structure model based on the keel model spacing and the keel fixing part model position, and performs layering, data annotation and rendering processing on the obtained sample skeleton model, so as to obtain a three-dimensional data model of the dry-hanging curtain wall quality sample to be manufactured, to guide the manufacturing of the dry-hanging curtain wall quality sample to be manufactured, so that the sample processing and manufacturing personnel can intuitively, accurately and quickly understand the structure size of the dry-hanging curtain wall quality sample to be manufactured, and the material consumption quantity control is more accurate, so as to effectively avoid material waste; and the sample processing time can be effectively shortened, and the material and labor can be reduced.

[0039] To the accomplishment of the foregoing and related ends, one or more aspects of the application comprise the features hereinafter fully described. The following description and the annexed drawings set forth in detail certain illustrative aspects of the application. These aspects are indicative, however, of but a few of the various ways in which the principles of the application can be employed. Other aspects and advantages of the application will become apparent from the following detailed description, taken in conjunction with the accompanying drawings, illustrating by way of example the principles of the application. BRIEF DESCRIPTION OF DRAWINGS

[0040] Other objects and advantages of the application will become apparent from the following description, taken in conjunction with the accompanying drawings, illustrating by way of example the principles of the application. In the drawings:

[0041] Figure 1 A flow chart of a dry-hanging curtain wall quality sample manufacturing method according to an embodiment of the application;

[0042] Figure 2 A connecting piece model layout after deep processing of a keel model and a connecting piece model according to an embodiment of the application;

[0043] Figure 3 A keel model layout after deep processing of a keel model and a connecting piece model according to an embodiment of the application;

[0044] Figure 4 A sample primary model diagram according to an embodiment of the application;

[0045] Figure 5 A three-dimensional model diagram of a dry-hanging curtain wall quality sample to be manufactured according to an embodiment of the application. DETAILED DESCRIPTION

[0046] In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of one or more embodiments. It can be evident, however, that the embodiments can be practiced without these specific details.

[0047] In view of the foregoing, the prior art, the quality sample of the dry-hanging curtain wall is processed and manufactured by the sample drawing guidance, which has the problems of low efficiency, long time, non-intuitive, low accuracy, easy material waste, etc., and a dry-hanging curtain wall quality sample manufacturing method is provided.

[0048] The specific embodiments of the application will be described below with reference to the accompanying drawings.

[0049] To illustrate the dry-hanging curtain wall quality sample manufacturing method provided by the application, Figure 1 A flow chart of a dry-hanging curtain wall quality sample manufacturing method according to an embodiment of the application is shown; Figure 2 A keel model layout after deep processing of a keel model and a connecting piece model according to an embodiment of the application is shown; Figure 3The keel model and the connector model after deepening processing are shown in the arrangement of the connector model according to the embodiment of the present application; Figure 4 The template primary model according to the embodiment of the present application is shown. Figure 5 The three-dimensional model of the dry-hanging curtain wall quality template to be made according to the embodiment of the present application is shown.

[0050] As shown in the drawings, Figures 1 to 5 The dry-hanging curtain wall quality template making method provided by the present application includes the following steps:

[0051] In step S110, according to the template drawing, the BIM modeling technology is used to create the model of each component of the dry-hanging curtain wall quality template to be made, to obtain a component model; wherein the component model includes a keel model, a keel fixing part model, a connector model and a base wall structure model.

[0052] Specifically, by using the BIM modeling technology, the important nodes in the template drawing are embodied in the form of an information model, which facilitates the understanding of the structure and data of the template by the production personnel and facilitates subsequent processing and production. When making the dry-hanging curtain wall quality template, a base wall is generally made, then the keel is fixed on the base wall through the keel fixing part, and then the connector for connecting the base wall is designed on the keel. According to the component data in the template drawing, the component model is created by the BIM modeling technology, including but not limited to the keel model, the keel fixing part model, the connector model and the base wall structure model.

[0053] As a preferred embodiment of the present application, according to the template drawing, the BIM modeling technology is used to create the model of each component of the dry-hanging curtain wall quality template to be made, to obtain a component model, including:

[0054] According to the template drawing, the size data of each component of the dry-hanging curtain wall quality template to be made is statistically processed.

[0055] According to the size data of each component, the model of each component is made by the BIM modeling technology, to obtain a component model.

[0056] Specifically, in order to avoid omission in the process of creating the component model, first, according to the template drawing of the dry-hanging curtain wall quality template to be made, the size data of each component of the template is statistically processed, and then according to the size data of each component, the model of each component is made by the BIM modeling technology, to obtain a component model.

[0057] As a preferred embodiment of the present application, according to the template drawing, the size data of each component of the dry-hanging curtain wall quality template to be made is statistically processed, including:

[0058] From the template drawing, obtain the component name and position information of each component of the dry-hanging curtain wall quality template to be made, and load the component name and position information of each component into a preset table to obtain a primary component information table;

[0059] According to the corresponding component name and position information, extract the corresponding size data from the template drawing, and load the size data into the primary component information table to complete the size data statistical processing of each component of the dry-hanging curtain wall quality template to be made.

[0060] Specifically, in order to avoid the problem of data disorder in the component size data statistical process, each component constituting the template can be correspondingly counted by creating a data statistical table.

[0061] In step S120, based on the actual size of the dry-hanging curtain wall quality template to be made, the keel model, the keel fixing part model and the connecting part model are deepened to determine the distance between the keel models, the position of the keel fixing part model on the base wall structure model and the position of the connecting part model on the keel model.

[0062] Specifically, the distance between the keel models, the position of the keel fixing part and the position of the connecting part in the template drawing are generally represented in the form of a range, for example, the distance between two adjacent keels is 2-5 meters, or a keel fixing part is made at a position every 2-5 meters based on the length of the curtain wall. When making the template, manual lofting is required to determine the distance between the keels and then the position of the keel fixing part. However, due to the low accuracy of manual lofting, once there is a large error in calculation, rework is required, which wastes manpower and materials. Therefore, in the technical scheme of the present application, the keel model is deepened to determine the appropriate distance between the keels, and then the position of the keel fixing part model on the base wall structure model and the position of the connecting part model on the keel model are determined.

[0063] As a preferred scheme of the present application, based on the actual size of the dry-hanging curtain wall quality template to be made, the keel model, the keel fixing part model and the connecting part model are deepened to determine the distance between the keel models, the position of the keel fixing part model on the base wall structure model and the position of the connecting part model on the keel model, comprising:

[0064] According to the actual size of the dry-hanging curtain wall quality template to be made, lofting processing is performed on the keel model on the base wall structure model;

[0065] Based on the results of the lofting processing and the preset template making requirements, the distance between the keel models and the position of the connecting part model on the keel model are determined;

[0066] According to the distance between the keel models, the positions of the keel fixing member models on the base wall structure model are determined.

[0067] Specifically, according to the actual size of the dry-hanging curtain wall quality sample to be made, lofting is performed on the keel models, and then according to preset sample making requirements, the distance between the keel models that meet the requirements is selected from a plurality of lofting results, wherein the preset sample making requirements can be set according to actual needs, for example, the keel distance range can be set according to actual processing experience or experiment, and the present application is not particularly limited in this regard. It should be noted that the keel fixing member model in the present application is determined based on the position of the keel model, and the connecting member model is determined by simulating the connection of the keel on the base wall.

[0068] In step S130, according to the distance between the keel models, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models, the keel model assembly on the base wall structure model and the connecting member model installation on the keel model are performed to obtain a sample framework model.

[0069] Specifically, according to the distance between the keel models determined in the foregoing steps, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models are determined, and the keel model and the connecting member model can be installed on the base wall structure model.

[0070] As a preferred embodiment of the present application, according to the distance between the keel models, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models, the keel model assembly on the base wall structure model and the connecting member model installation on the keel model are performed to obtain a sample framework model, comprising:

[0071] According to the distance between the keel models, the positions of the keel fixing member models on the base wall structure model and the positions of the connecting member models on the keel models, the keel assembly simulation process is performed to obtain a keel assembly sequence that meets the preset construction requirements;

[0072] According to the keel assembly sequence, the keel models are assembled on the base wall structure model, and keel model assembly sequence flow data is generated;

[0073] The model obtained after the keel model assembly and the keel model assembly sequence flow data are combined to obtain a sample framework model.

[0074] Specifically, the keel assembling sequence meeting the preset construction requirement is obtained by simulating the keel assembling process, wherein the preset construction requirement can be set according to actual construction experience, and the keel assembling sequence data is combined with the whole model obtained after the keel model is assembled, so that the production personnel can understand the sample production process by calling the keel installation sequence data through the model during actual construction.

[0075] In step S140, the base wall structure model in the sample skeleton model is layered according to the sample drawing, to obtain a sample primary model.

[0076] Specifically, the base wall structure model is designed according to the base wall (building wall), and the wall generally includes multiple layers. In order to make the sample more consistent with the actual situation, so as to know the installation and construction of the curtain wall on the base wall, it is necessary to layer the base wall structure model in the sample skeleton model according to the sample drawing, to obtain a sample primary model.

[0077] As a preferred embodiment of the present application, the base wall structure model in the sample skeleton model is layered according to the sample drawing, to obtain a sample primary model, comprising:

[0078] According to the preset layering sequence, the base wall structure model in the sample skeleton model is layered according to the sample drawing;

[0079] A layer structure mark is added to each layer of the layered base wall structure model, to obtain a sample primary model.

[0080] Specifically, the base wall structure model is layered one by one from the side close to the indoor side of the building to the side away from the indoor side of the building, or from the side away from the indoor side of the building to the side close to the indoor side of the building. The preset layering sequence can be set according to needs, which is not particularly limited by the present application. After layering, a layer structure mark is added to each layer of the base wall structure model, for example, as shown in the drawing, each layer is marked in text form, to obtain a sample primary model. Figure 4

[0081] As a preferred embodiment of the present application, during the process of layering the base wall structure model in the sample skeleton model according to the sample drawing in the preset layering sequence,

[0082] The modeling function of the BIM modeling software is used to layer the base wall structure model in the sample skeleton model according to the preset layering sequence, so that each layer of the base wall structure model is disassembled to form an independent three-dimensional layer model.

[0083] ​Specifically, the modeling software generally includes a modeling function, such as the modeling function of REVIT, which can divide the base wall structure model into multiple layers, so that each layer of the base wall structure model is disassembled to form an independent three-dimensional layer model.

[0084] In step S150, data labeling processing is performed on each layer of the base wall structure model of the sample primary model and the keel model, the keel fixing part model and the connecting part model, to obtain a data sample model.

[0085] Specifically, data labeling processing is performed on each layer of the base wall structure model of the sample primary model and the keel model, the keel fixing part model and the connecting part model, so that the overall sample primary model contains all the corresponding data, thereby obtaining a data sample model.

[0086] As a preferred embodiment of the present application, in the process of performing data labeling processing on each layer of the base wall structure model of the sample primary model and the keel model, the keel fixing part model and the connecting part model to obtain a data sample model,

[0087] The data labeling processing includes size data labeling and material data labeling.

[0088] Specifically, in order for the sample maker to understand the sample structure data while also understanding the structure material when processing and making the sample, the data labeling processing includes size data labeling and material data labeling.

[0089] In step S160, rendering processing is performed on the data sample model to obtain a three-dimensional data model of the dry-hanging curtain wall quality sample to be made.

[0090] Specifically, by performing rendering processing on the data sample model, the sample maker can see the actual effect in advance through the rendered model.

[0091] As a preferred embodiment of the present application, the rendering processing is performed on the data sample model to obtain a three-dimensional data model of the dry-hanging curtain wall quality sample to be made, including:

[0092] The keel model, the keel fixing part model, the connecting part model and each layer of the base wall structure model in the data sample model are rendered by the rendering software to obtain a three-dimensional data model of the dry-hanging curtain wall quality sample to be made.

[0093] Specifically, the keel model, the keel fixing part model, the connecting part model and each layer of the base wall structure model in the data sample model are rendered by the rendering software, thereby increasing the intuitiveness of the model.

[0094] As a preferred embodiment of the present application, the rendering software is Enscape.

[0095] It should be noted that the rendering software in the technical scheme of the present application is preferably but not limited to Enscape.

[0096] In step S170, the quality sample of the dry-hanging curtain wall to be made is made according to the three-dimensional data model.

[0097] Specifically, through the three-dimensional data model, the sample processing personnel can click the data, material and construction sequence of the structure on the model to guide the sample processing.

[0098] As can be seen from the above specific embodiments, the dry-hanging curtain wall quality sample making method provided by the present application creates a component model of the dry-hanging curtain wall quality sample to be made by using BIM modeling technology according to sample drawings, then deepens the processing of the keel model, the keel fixing part model and the connecting part model according to the actual size of the quality sample to determine the keel model spacing and the connecting part model position that meet the actual size of the sample, assembles the keel model on the base wall structure model based on the keel model spacing and the keel fixing part model position, and performs layering, data labeling and rendering processing on the obtained sample skeleton model, thereby obtaining a three-dimensional data model of the dry-hanging curtain wall quality sample to be made, to guide the making of the dry-hanging curtain wall quality sample to be made, so that the sample processing personnel can intuitively, accurately and quickly understand the structure size design of the dry-hanging curtain wall quality sample to be made, and the control of the material consumption quantity is more accurate, thereby effectively avoiding material waste, and the sample processing time can be effectively shortened and the material and labor can be effectively reduced.

[0099] The dry-hanging curtain wall quality sample making method according to the present application is described above with reference to the accompanying drawings in an exemplary manner. However, those skilled in the art should understand that various improvements can be made to the above-mentioned dry-hanging curtain wall quality sample making method according to the present application without departing from the content of the present application. Therefore, the protection scope of the present application should be determined by the content of the appended claims.

Claims

1. A method for manufacturing a quality sample of a dry-hung curtain wall, characterized in that, The method comprises the following steps: According to the sample drawing, the components of the dry hanging curtain wall quality sample to be made are modeled by BIM modeling technology to obtain component models; wherein the component models include keel models, keel fixing part models, connecting part models and base wall structure models; Based on the actual size of the dry hanging curtain wall quality sample to be made, the keel models, the keel fixing part models and the connecting part models are further processed to determine the spacing between the keel models, the positions of the keel fixing part models on the base wall structure model and the positions of the connecting part models on the keel models; which includes: According to the actual size of the dry hanging curtain wall quality sample to be made, the keel models are lofted on the base wall structure model; Based on the results of the lofting and the preset sample making requirements, the spacing between the keel models and the positions of the connecting part models on the keel models are determined; According to the spacing between the keel models, the positions of the keel fixing part models on the base wall structure model are determined; According to the spacing between the keel models, the positions of the keel fixing part models on the base wall structure model and the positions of the connecting part models on the keel models, the keel model assembly on the base wall structure model and the connecting part model installation on the keel model are performed to obtain a sample skeleton model; which includes: According to the spacing between the keel models, the positions of the keel fixing part models on the base wall structure model and the positions of the connecting part models on the keel models, the keel assembly simulation is performed to obtain a keel assembly sequence that meets the preset construction requirements; According to the keel assembly sequence, the keel models are assembled on the base wall structure model, and a keel model assembly sequence flow data is generated; The model obtained after the keel model assembly and the keel model assembly sequence flow data are combined to obtain a sample skeleton model; According to the sample drawing, the base wall structure model in the sample skeleton model is layered to obtain a sample primary model; The layers of the base wall structure model of the sample primary model and the keel models, the keel fixing part models and the connecting part models are data labeled to obtain a data sample model; The data sample model is rendered to obtain a three-dimensional data model of the dry hanging curtain wall quality sample to be made; According to the three-dimensional data model, the dry hanging curtain wall quality sample to be made is made.

2. The method of claim 1, wherein, According to the sample drawing, the components of the dry hanging curtain wall quality sample to be made are modeled by BIM modeling technology to obtain component models, which includes: According to the sample drawing, the size data of the components of the dry hanging curtain wall quality sample to be made is statistically processed; According to the size data of the components, the models of the components are made by BIM modeling technology to obtain component models.

3. The method of claim 2, wherein the step of forming the quality template comprises the steps of: forming a first layer of a first material on the first surface of the first substrate; and forming a second layer of a second material on the first layer of the first material. According to the sample drawing, the size data of the components of the dry hanging curtain wall quality sample to be made is statistically processed, which includes: From the sample drawing, the component name and position information of each component of the to-be-made dry-hanging curtain wall quality sample are acquired, and the component name and position information of each component are loaded into a preset table to obtain a primary component information table; Corresponding to the component name and position information, corresponding size data are extracted from the sample drawing, and the size data are loaded into the primary component information table to complete size data statistical processing of each component of the to-be-made dry-hanging curtain wall quality sample.

4. The method of claim 1, wherein, The layering processing of the base wall structure model in the sample skeleton model according to the sample drawing to obtain a sample primary model comprises: According to a preset layering sequence, the layering processing of the base wall structure model in the sample skeleton model according to the sample drawing is performed; A layer structure mark is added to each layer of the layering-processed base wall structure model to obtain a sample primary model.

5. The method of claim 4, wherein the step of forming the quality template comprises the steps of: forming a first layer of a first material on the first surface of the first substrate; and forming a second layer of a second material on the first layer of the first material. In the process of performing the layering processing of the base wall structure model in the sample skeleton model according to the sample drawing according to the preset layering sequence, The modeling function of the BIM modeling software is used to perform the layering processing of the base wall structure model in the sample skeleton model according to the preset layering sequence, so that each layer of the base wall structure model is disassembled to form an independent three-dimensional layer model.

6. The method of claim 1, wherein, In the process of performing the data mark processing on each layer of the base wall structure model of the sample primary model and the keel model, the keel fixing part model and the connecting part model to obtain a data sample model, The data mark processing comprises size data marking and material data marking.

7. The method of claim 1, wherein the method further comprises: The rendering processing of the data sample model to obtain a three-dimensional data model of the to-be-made dry-hanging curtain wall quality sample comprises: The keel model, the keel fixing part model, the connecting part model and each layer of the base wall structure model in the data sample model are rendered by a rendering software to obtain a three-dimensional data model of the to-be-made dry-hanging curtain wall quality sample.

8. The method of claim 7, wherein the step of forming the quality template comprises the steps of: forming a first layer of a first material on the first surface of the first substrate; and forming a second layer of a second material on the first layer of the first material. The rendering software is Enscape.

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