Data processing method for building material non-standard part

By collecting, modeling, manufacturing, and calibrating data on non-standard parts, and combining this with computer 3D design and structural analysis, the problem of information management for processing data on non-standard building materials has been solved, achieving efficient and reliable production management and improved product safety.

CN120930202APending Publication Date: 2025-11-11INNER MONGOLIA LIHENGFENG NEW TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202410576942.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-10
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

Existing data processing methods for non-standard building materials cannot effectively manage information, resulting in complex and costly production processes that fail to meet personalized needs and improve product safety.

Method used

By collecting information on non-standard parts, 3D modeling, manufacturing, calibration, and data management are carried out. Combined with computer 3D design software and structural analysis, the data can be digitized and automated.

Benefits of technology

It improves design accuracy and production efficiency, meets personalized needs, enhances product safety and reliability, reduces accident risks, and improves enterprise competitiveness.

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Abstract

The invention is suitable for the field of building material non-standard parts, and provides a data processing method for building material non-standard parts, which comprises the following steps: carrying out detailed analysis and listing on own information required by the building material non-standard parts to obtain data of the building material non-standard parts; drawing a three-dimensional model of the building material non-standard part, and determining the geometrical shape, the structural characteristics and the connection mode of the building material non-standard part; building material non-standard part modeling is carried out in combination with computer 3D diagram design software; building material non-standard parts are manufactured; data of the manufactured building material non-standard part are collected, mechanical analysis and simulation are conducted on the building material non-standard part through structural analysis software, the stress performance, stability and safety of the building material non-standard part are evaluated, modeling is conducted through the data of the building material non-standard part and the building material non-standard part, and the data of the building material non-standard part are calibrated; managing and archiving the data of the building material non-standard component obtained in the first step; the data processing method improves design precision, optimizes materials and processes, improves production efficiency and enhances product safety.
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Description

Technical Field

[0001] This invention relates to the field of non-standard building materials, and more particularly to a data processing method for non-standard building materials. Background Technology

[0002] Non-standard parts mainly refer to accessories that are not subject to strict national standards or specifications, and are controlled freely by enterprises. There are many varieties of non-standard parts, and no standardized classification exists. They can be broadly divided into metallic non-standard parts and non-metallic non-standard parts. Metallic non-standard parts are produced by manufacturers using equipment based on customer-provided drawings, often using molds. Tolerance requirements and surface finishes are specified by the customer, without a fixed standard. These products require complete quality control from casting to finishing, involving complex and highly variable processes, and generally cost more than standard parts. Non-metallic non-standard parts involve the processing of non-metallic materials such as plastics, wood, and stone. In recent years, the injection molding industry and the development of plastic molds have become increasingly sophisticated. The use of curved surface design and CNC programming has significantly improved the cost and tolerance levels of non-standard processing.

[0003] Non-standard parts typically refer to components that require customization or special processing during the production process. Their data processing methods can be designed according to specific circumstances and needs. However, existing data processing methods for non-standard building materials are not well-suited for information management of data.

[0004] Based on this, a data processing method for non-standard building materials is proposed to solve the above problems. Summary of the Invention

[0005] The purpose of this invention is to provide a data processing method for non-standard building materials, which aims to solve the problem that non-standard parts usually refer to components that need to be customized or specially processed during the production process, and their data processing methods can be designed according to specific circumstances and needs; while existing data processing methods for non-standard building materials cannot effectively manage information data.

[0006] Specifically: A data processing method for non-standard building materials includes the following steps: Step 1: Collect information on non-standard building materials A detailed analysis and listing of the necessary information for non-standard building materials components is conducted, and a list is created. Then, information on non-standard building materials components is collected based on the list to obtain data on non-standard building materials components. Step 2: Modeling Non-Standard Building Materials Based on the data of non-standard building materials, draw a 3D model of the non-standard building materials and determine its geometric shape, structural features and connection method; complete the modeling of non-standard building materials by using the collected information of non-standard building materials and computer 3D modeling software. Step 3: Manufacturing based on the model of non-standard building material parts Based on the data of the non-standard building materials obtained, and combined with the modeling of the non-standard building materials, the non-standard building materials are manufactured. Step 4: Calibration of data for non-standard building materials Data of the completed non-standard building materials is collected, and mechanical analysis and simulation of the non-standard building materials are performed using structural analysis software to evaluate their stress performance, stability and safety. Then, the data of the non-standard building materials is calibrated by using the data and model of the non-standard building materials. Step 5: Data Management and Archiving After calibrating the data of non-standard building materials, the data of non-standard building materials obtained in step one is managed and archived.

[0007] In conclusion, data processing for non-standard building materials is of great significance for improving design accuracy, optimizing materials and processes, increasing production efficiency, and enhancing product safety. It can provide enterprises with more efficient, reliable, and personalized products and services, thereby enhancing their competitiveness.

[0008] The technical solution of this application will be further described below: In one embodiment, in step one, the information required for non-standard building materials can be obtained through engineering drawings, technical specifications, and customer requirements.

[0009] Furthermore, in step one, the list includes the function, size, material, and load-bearing capacity of non-standard building materials; then, information on non-standard building materials is collected based on their function, size, material, and load-bearing capacity.

[0010] Furthermore, when the non-standard building materials collected are physical objects, the size list is collected by taking multiple measurements and averaging several relatively concentrated values.

[0011] In one embodiment, in step two, the computer 3D modeling software includes Autodesk AutoCAD, SketchUp, Blender, and 3ds Max.

[0012] In one embodiment, in step three, based on the obtained data of the non-standard building materials, and combined with the modeling of the non-standard building materials, the non-standard building materials are processed and manufactured using manufacturing methods including CNC machining, casting, and forging.

[0013] Furthermore, in step three, during the manufacturing process based on the modeling of non-standard building materials, multiple non-standard building materials are produced, and the non-standard building materials are selected and the data of non-standard building materials that do not conform to the data collected in step one are eliminated.

[0014] In one embodiment, the non-standard building material parts obtained in step three are subjected to manufacturing quality inspection and testing. The dimensions, surface quality, and material properties of the non-standard building material parts are inspected and verified through quality inspection and testing methods.

[0015] Furthermore, the quality inspection and testing methods include physical performance testing and practical application testing using measuring instruments and testing equipment.

[0016] Furthermore, after the non-standard building materials are manufactured and tested, continuous improvement and optimization are carried out; during the design and manufacturing process of the non-standard building materials, continuous improvement and optimization are also carried out.

[0017] Compared with existing technologies, the data processing method for non-standard building materials of this invention can achieve the following: The data processing method of this invention can meet personalized needs. Non-standard building materials are usually customized according to the needs of specific projects or customers. Through data processing, customer needs can be accurately grasped, and personalized solutions can be provided to meet specific customer requirements. Furthermore, the data processing method of this invention enhances the safety and reliability of products. By performing structural analysis and simulation through data processing, the stress performance and stability of non-standard building materials can be evaluated, thereby improving product safety and reliability and reducing accident risks. It also enables information management of production, allowing for the digital and automated management of production information, improving the efficiency and accuracy of production management, and providing a scientific basis for enterprise decision-making. Attached Figure Description

[0018] Figure 1 This is a flowchart of the data processing method for non-standard building materials according to the present invention. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention. The specific implementation of the invention will be described in detail below with reference to specific embodiments.

[0020] In embodiments of the present invention, such as Figure 1 As shown, a data processing method for non-standard building materials includes the following steps: Step 1: Collect information on non-standard building materials A detailed analysis and listing of the necessary information for non-standard building materials components is conducted, and a list is created. Then, information on non-standard building materials components is collected based on the list to obtain data on non-standard building materials components. Note: Information required for non-standard building materials can be obtained through engineering drawings, technical specifications, and customer requirements; the list includes the function, dimensions, material, and load-bearing capacity of the non-standard building materials; and information on non-standard building materials is collected based on their function, dimensions, material, and load-bearing capacity.

[0021] Step 2: Modeling Non-Standard Building Materials Based on the data of non-standard building materials, draw a 3D model of the non-standard building materials and determine its geometric shape, structural features and connection method; complete the modeling of non-standard building materials by using the collected information of non-standard building materials and computer 3D modeling software. Step 3: Manufacturing based on the model of non-standard building material parts Based on the data of the non-standard building materials obtained, and combined with the modeling of the non-standard building materials, the non-standard building materials are manufactured. Step 4: Calibration of data for non-standard building materials Data of the completed non-standard building materials is collected, and mechanical analysis and simulation of the non-standard building materials are performed using structural analysis software to evaluate their stress performance, stability and safety. Then, the data of the non-standard building materials is calibrated by using the data and model of the non-standard building materials. Step 5: Data Management and Archiving After calibrating the data of non-standard building materials, the data of non-standard building materials obtained in step one is managed and archived.

[0022] The data processing method of this invention can meet personalized needs. Non-standard building materials are usually customized according to the needs of specific projects or customers. Through data processing, customer needs can be accurately grasped, and personalized solutions can be provided to meet specific customer requirements. Furthermore, the data processing method of this invention enhances the safety and reliability of products. By performing structural analysis and simulation through data processing, the stress performance and stability of non-standard building materials can be evaluated, thereby improving product safety and reliability and reducing accident risks. It also enables information management of production, allowing for the digital and automated management of production information, improving the efficiency and accuracy of production management, and providing a scientific basis for enterprise decision-making.

[0023] In conclusion, data processing for non-standard building materials is of great significance for improving design accuracy, optimizing materials and processes, increasing production efficiency, and enhancing product safety. It can provide enterprises with more efficient, reliable, and personalized products and services, thereby enhancing their competitiveness.

[0024] In this embodiment of the invention, when the non-standard building material parts collected are physical objects, the size list is collected by taking multiple measurements and averaging several relatively concentrated values.

[0025] In this embodiment of the invention, in step two, the computer 3D drawing design software includes Autodesk AutoCAD, SketchUp, Blender, and 3ds Max.

[0026] It should be noted that computer 3D modeling software such as Autodesk AutoCAD, SketchUp, Blender, and 3ds Max are existing technologies. Detailed operation instructions can be found in existing literature and journals, and they can also be purchased directly from the market. They are not the subject of this invention and will not be described in detail here.

[0027] In this embodiment of the invention, in step three, based on the obtained data of non-standard building materials and combined with the modeling of non-standard building materials, the non-standard building materials are processed and manufactured using manufacturing methods including CNC machining, casting, and forging.

[0028] In this embodiment of the invention, in step three, during the manufacturing process based on the modeling of non-standard building materials, multiple non-standard building materials are produced, and the multiple non-standard building materials are selected to remove data that does not conform to the non-standard building materials collected in step one.

[0029] In this embodiment of the invention, the non-standard building materials obtained in step three are subjected to manufacturing quality inspection and testing. The dimensions, surface quality, and material properties of the non-standard building materials are inspected and verified through quality inspection and testing methods.

[0030] In this embodiment of the invention, the quality inspection and testing methods include physical performance testing and practical application testing using measuring instruments and testing equipment.

[0031] In this embodiment of the invention, after the non-standard building materials are inspected and tested for manufacturing quality, continuous improvement and optimization are carried out; during the design and manufacturing process of the non-standard building materials, continuous improvement and optimization are carried out to improve design efficiency, processing accuracy and product quality, so as to meet the ever-changing market demand and customer needs.

[0032] Non-standard parts typically refer to components that require customization or special processing during the production process. Their data processing methods can be designed according to specific circumstances and needs. However, existing data processing methods for non-standard building materials cannot effectively manage data through information systems. This invention's data processing method can meet personalized needs. Non-standard building materials are typically customized based on specific project or customer requirements. Through data processing, customer needs can be accurately grasped, providing personalized solutions to meet specific requirements. Furthermore, this invention's data processing method enhances product safety and reliability. Structural analysis and simulation through data processing can assess the stress performance and stability of non-standard building materials, improving product safety and reliability and reducing accident risks. It also enables information-based production management, allowing for the digital and automated management of production information, improving the efficiency and accuracy of production management, and providing a scientific basis for enterprise decision-making. Data processing of non-standard building materials is of great significance for improving design accuracy, optimizing materials and processes, increasing production efficiency, and enhancing product safety. It can provide enterprises with more efficient, reliable, and personalized products and services, enhancing their competitiveness.

[0033] In the description of this invention, although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A data processing method for non-standard building materials, characterized in that, Includes the following steps: Step 1: Collect information on non-standard building materials A detailed analysis and listing of the necessary information for non-standard building materials components is conducted, and a list is created. Then, information on non-standard building materials components is collected based on the list to obtain data on non-standard building materials components. Step 2: Modeling Non-Standard Building Materials Based on the data of non-standard building materials, draw a 3D model of the non-standard building materials and determine its geometric shape, structural features and connection method; complete the modeling of non-standard building materials by using the collected information of non-standard building materials and computer 3D modeling software. Step 3: Manufacturing based on the model of non-standard building material parts Based on the data of the non-standard building materials obtained, and combined with the modeling of the non-standard building materials, the non-standard building materials are manufactured. Step 4: Calibration of data for non-standard building materials Data of the completed non-standard building materials is collected, and mechanical analysis and simulation of the non-standard building materials are performed using structural analysis software to evaluate their stress performance, stability and safety. Then, the data of the non-standard building materials is calibrated by using the data and model of the non-standard building materials. Step 5: Data Management and Archiving After calibrating the data of non-standard building materials, the data of non-standard building materials obtained in step one is managed and archived.

2. The data processing method for non-standard building materials according to claim 1, characterized in that, In step one, the information required for non-standard building materials can be obtained through engineering drawings, technical specifications, and customer requirements.

3. The data processing method for non-standard building materials according to claim 2, characterized in that, In step one, the list includes the function, size, material and load-bearing capacity of non-standard building materials; then, information on non-standard building materials is collected based on their function, size, material and load-bearing capacity.

4. The data processing method for non-standard building materials according to claim 3, characterized in that, When the non-standard building material parts collected are physical objects, the size list is collected by taking multiple measurements and averaging several relatively concentrated values.

5. The data processing method for non-standard building materials according to claim 1, characterized in that, In step two, the computer 3D modeling software includes Autodesk AutoCAD, SketchUp, Blender, and 3ds Max.

6. The data processing method for non-standard building materials according to claim 1, characterized in that, In step three, based on the data of the non-standard building materials obtained, and combined with the modeling of the non-standard building materials, the non-standard building materials are processed and manufactured using manufacturing methods including CNC machining, casting, and forging.

7. The data processing method for non-standard building materials according to claim 6, characterized in that, In step three, during the manufacturing process based on the modeling of non-standard building materials, multiple non-standard building materials are produced, and the non-standard building materials are selected and the data of non-standard building materials that do not conform to the data collected in step one are eliminated.

8. The data processing method for non-standard building materials according to claim 1, characterized in that, The non-standard building materials obtained in step three are subjected to manufacturing quality inspection and testing. The dimensions, surface quality, and material properties of the non-standard building materials are inspected and verified through quality inspection and testing methods.

9. The data processing method for non-standard building materials according to claim 8, characterized in that, The quality inspection and testing methods include physical performance testing and practical application testing using measuring instruments and testing equipment.

10. The data processing method for non-standard building materials according to claim 9, characterized in that, After the non-standard building materials are manufactured and tested, continuous improvement and optimization are carried out; during the design and manufacturing process of the non-standard building materials, continuous improvement and optimization are carried out.