Process management method and system for riveting manufacturing, electronic equipment and storage medium

Through the process management method based on riveting project information, a data interoperability mechanism for riveting manufacturing is established, which solves the problem of data isolation in each link in the riveting manufacturing process, and improves management efficiency and accuracy.

CN120525322APending Publication Date: 2025-08-22CRRC QINGDAO SIFANG CO LTD
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Patent Information

Application Number
CN202510668365.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-08-22

AI Technical Summary

Technical Problem

The data in all links of the existing riveting manufacturing process cannot be interconnected, resulting in low management efficiency and error-prone.

Method used

Provide a process management method for riveting manufacturing, determine the demand management data through riveting product project information, establish component design models, conduct product design and process design, configure production resources, and realize data interoperability and automatic management of each link.

Benefits of technology

It improves the management efficiency and accuracy of the riveting manufacturing process, realizes data interoperability in all links, and reduces manual management errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a process management method and system for riveting manufacturing, electronic equipment and a storage medium, is applied to the technical field of riveting manufacturing, and provides a method for determining riveting demand management data according to riveting product project information in order to solve the problem of low efficiency of riveting manufacturing process management in related technologies; performing riveting product design on a riveting part design model established based on the riveting demand management data to obtain riveting product design data; performing riveting process design based on the riveting product design data to obtain riveting process design data; performing riveting production resource configuration based on the riveting process design data to obtain riveting production resource configuration data so as to produce riveting products based on the riveting production resource configuration data; the automatic management of each link in the rivet manufacturing process can be realized, the data intercommunication of each link is realized, the management efficiency is high, and the accuracy is high.
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Description

Technical Field

[0001] The present invention relates to the field of riveting technology, and in particular to a process management method, system, electronic equipment and computer-readable storage medium for riveting manufacturing. Background Art

[0002] With the increasing use of diverse materials in the equipment manufacturing industry, riveting technology has gradually become a common connection method in this field. The riveting manufacturing process involves multiple links, such as riveting requirements management, riveting design management, riveting process management, and riveting production resource management. Currently, each link relies primarily on manual and decentralized management, resulting in data being disconnected and interoperable. Furthermore, manual management is inefficient and prone to errors.

[0003] In view of this, how to achieve full-process management in the riveting manufacturing process and improve the management efficiency and data interoperability of each link has become a problem that technical personnel in this field need to solve. Summary of the Invention

[0004] The purpose of the embodiments of the present invention is to provide a process management method, system, electronic device and computer-readable storage medium for riveting manufacturing, which have high management efficiency and high accuracy during use.

[0005] To solve the above technical problems, the embodiments of the present invention provide the following technical solutions:

[0006] In one aspect, the present invention provides a process management method for riveting manufacturing, comprising:

[0007] Determine riveting demand management data based on riveting product project information;

[0008] Performing riveting product design on the riveting component design model established based on the riveting demand management data to obtain riveting product design data;

[0009] Perform riveting process design based on the riveting product design data to obtain riveting process design data;

[0010] Riveting production resources are configured based on the riveting process design data to obtain riveting production resource configuration data, so as to produce riveted products based on the riveting production resource configuration data.

[0011] In one embodiment, the riveted product design data includes at least two of: fastener selection content information, riveting technology content information, riveting risk assessment content information, riveting design drawing information, and a riveted joint risk classification list;

[0012] The step of performing riveting product design on the riveting component design model established based on the riveting demand management data to obtain riveting product design data includes:

[0013] Extracting data information of a component riveting design model, where the component riveting design model is established based on the riveting requirement management data;

[0014] Matching the riveted joint design information based on the data information and the riveted joint design database to obtain a riveted joint design result;

[0015] determining whether the design of the riveted joint meets the design standard requirements according to the riveted joint design result, and if so, determining the riveted joint design parameters according to the riveted joint design result;

[0016] determining a riveted fastener type that meets the fastener performance requirements based on the riveted joint design parameters in combination with a riveted fastener selection database, and generating fastener selection content information if the riveted fastener type meets the fastener performance requirements; the riveted fastener selection database stores riveted fastener types corresponding to the riveted joint design parameters;

[0017] The component riveting design model is updated by using a riveted joint designed based on the riveted joint design parameters and a rivet determined based on the riveted fastener type selection to obtain a new component riveting design model;

[0018] Performing riveting simulation calculation based on the new component riveting design model to generate riveting technical content information including riveting simulation calculation results;

[0019] Performing a risk level assessment from a riveted joint risk assessment database based on the riveting simulation calculation results, determining a corresponding risk level result, and generating riveting risk assessment content information for the riveted component based on the risk level result;

[0020] Determine riveting design drawing information based on the riveting risk assessment information and a riveting product design drawing database, wherein the riveting design drawing information carries dimension information, fastener information, risk level, and installation information of each riveted joint;

[0021] A riveted joint risk grading list for each riveted joint is generated based on the riveted design drawing information and a riveted joint risk grading database.

[0022] In one embodiment, the riveted joint design result includes at least two of the following: joint type, thickness of connected parent materials, number of parent material layers, order of each layer of parent material, and rivet type.

[0023] In one embodiment, the riveting process design data includes at least two of: riveting assembly simulation content information, riveting operation content information, riveting joint summary file, riveting process evaluation report, and riveting process specification;

[0024] Then, performing riveting process design based on the riveting product design data to obtain riveting process design data includes:

[0025] The riveting assembly process is formulated according to the riveting process assembly model established based on the riveting design drawing information and combined with the riveting component assembly simulation database to obtain riveting assembly process formulation data; the riveting assembly process formulation data includes component dimensions and tolerances, positioning and clamping methods, component assembly sequence, and rivet riveting sequence;

[0026] Acquire an assembly simulation result obtained by performing assembly simulation calculation based on the riveting assembly process data, and generate riveting assembly simulation content information if the assembly simulation result meets the assembly requirements;

[0027] Determining riveting operation content information based on the riveting assembly simulation content information;

[0028] Determining riveting process equipment information based on the equipment information in the riveting operation content information and a riveting process equipment database;

[0029] Determining the riveted fastener information based on the fastener information in the riveting operation content information and a riveted fastener database;

[0030] Based on the riveted joint design information and the riveted joint risk classification list, riveted joint elements are summarized in combination with a riveted joint summary database to obtain a riveted joint summary file including riveted joint element information;

[0031] Determining riveting process assessment items and riveting process assessment methods corresponding to each riveting process assessment item based on the riveting design drawing information and the riveted joint risk classification list in combination with the riveting process assessment management database;

[0032] Determining a riveting process assessment result according to the riveting process assessment method, and generating a riveting process assessment report if the riveting process assessment result is qualified;

[0033] A riveting process specification corresponding to the riveted joint is generated according to the riveting process assessment report and combined with a riveting process specification management database.

[0034] In one embodiment, the riveting production resource configuration data includes: at least two of: a process method configuration list, a riveting process equipment configuration list, a riveting fastener configuration list, a process method validity confirmation record, a process equipment capability confirmation record, and a fastening performance confirmation record;

[0035] The riveting production resource configuration is performed based on the riveting process design data to obtain riveting production resource configuration data, including:

[0036] Perform riveting process method configuration according to the riveting process specification in combination with the process configuration management database to determine a process method configuration list;

[0037] Performing riveting process assessment and verification according to the process method in the process method configuration list to obtain a riveting process assessment and verification result, and generating a process method validity confirmation record if the riveting process assessment and verification result is qualified;

[0038] According to the equipment requirement information in the riveting operation content information, riveting process equipment is configured in combination with the process equipment management database to generate a riveting process equipment configuration list;

[0039] Performing riveting test verification on each riveting process equipment in the riveting process assembly configuration list to obtain a riveting process equipment test verification result, and generating a process equipment capability confirmation record if the riveting process equipment test verification result is qualified;

[0040] Perform riveting fastener configuration according to the riveting process specification combined with the material configuration management database, and generate a riveting fastener configuration list;

[0041] A fastener performance test is performed on each riveted fastener in the riveted fastener configuration list to obtain a fastener performance test result, and a fastening performance confirmation record is generated if the fastener performance test result is qualified.

[0042] In one embodiment, it further includes:

[0043] A riveted product quality analysis is performed based on the riveting process design data to obtain riveted product quality data.

[0044] In one embodiment, the riveted product quality data includes: riveted assembly dimension records, riveted hole dimension records, riveted force displacement records, and riveted forming quality records;

[0045] The riveting product quality analysis based on the riveting process design data to obtain riveting product quality data includes:

[0046] Determine assembly inspection points based on assembly dimensions and positioning point information in the riveting operation content information and in combination with a riveted component assembly quality management database;

[0047] Performing assembly dimension quality confirmation based on the assembly inspection items to obtain assembly dimension measurement data, determining whether the assembly dimension measurement data meets a preset assembly dimension range, and if so, generating a riveting assembly dimension record;

[0048] Determine the hole making inspection items based on the hole making size and hole making steps in the riveting operation content information and in combination with the riveting hole preparation quality management database;

[0049] Confirm the hole size quality according to the hole detection item points to obtain hole size measurement data, and determine whether the hole size measurement data meets the preset hole size range. If so, generate a riveting hole size record;

[0050] Determine a riveting force displacement monitoring strategy based on the riveting force displacement tolerance zone in the riveting operation content information and in combination with a riveting process quality management database;

[0051] Performing riveting process quality confirmation according to the riveting force displacement monitoring strategy to obtain a riveting process monitoring result, and generating a riveting force displacement monitoring record if the riveting process monitoring result meets the preset riveting process requirements;

[0052] Determine riveting forming inspection items based on the inspection quality requirements in the riveting operation content information and in combination with the riveting rivet forming quality management database;

[0053] The riveting forming quality is confirmed according to the riveting forming detection items to obtain riveting forming measurement data, and it is determined whether the riveting forming measurement data is within a preset riveting forming size range. If so, a riveting forming quality record is generated.

[0054] In one embodiment, determining riveting demand management data based on riveting product project information includes:

[0055] Get riveting product project information;

[0056] According to the vehicle type information in the riveting product project information, matching the riveting technical requirement information corresponding to the vehicle type information from the product riveting technical requirement database;

[0057] determining whether the riveting technical requirement information is complete; if so, matching riveting requirement management data corresponding to the riveting technical requirement information from a riveting requirement knowledge database based on the riveting technical requirement information; wherein the riveting technical requirement information includes at least two of the following: working condition requirement information, riveting structure load-bearing requirement information, riveting technical standard requirement information, and customer requirement information; and the riveting requirement knowledge database includes at least two of the following: working condition requirement data, riveting structure load-bearing requirement data, riveting technical standard data, and customer-specific requirement data corresponding to different riveting technical requirement information;

[0058] A riveting requirement management list is generated according to the riveting requirement management data.

[0059] In one embodiment, it further includes:

[0060] The riveting demand management data, the riveting product design data, the riveting process design data, the riveting production resource configuration data and the riveting product quality data are stored in a corresponding database corresponding to the riveting product project information for data collection, and a project riveting report corresponding to the riveting product project is generated.

[0061] Another aspect of the present invention provides a process management system for riveting manufacturing, comprising:

[0062] The riveting product demand management subsystem is used to determine the riveting demand management data based on the riveting product project information;

[0063] A riveting product design management subsystem, configured to perform riveting product design on a riveting component design model established based on the riveting demand management data to obtain riveting product design data;

[0064] A riveting process design management subsystem is used to perform riveting process design on the riveted product design data to obtain riveting process design data;

[0065] The riveting production resource configuration management subsystem is used to configure riveting production resources based on the riveting process design data to obtain riveting production resource configuration data so as to produce riveted products based on the riveting production resource configuration data.

[0066] Another aspect of the present invention provides an electronic device, comprising:

[0067] memory for storing computer programs;

[0068] A processor is configured to implement the steps of the riveting manufacturing process management method as described above when executing the computer program.

[0069] Another aspect of the present invention provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, the steps of the process management method for riveting manufacturing as described above are implemented.

[0070] It can be seen from the above technical solutions that the embodiments of the present invention have the following advantages:

[0071] An embodiment of the present invention provides a process management method for riveting manufacturing, comprising: determining riveting demand management data based on riveting product project information; performing riveting product design on a riveting component design model established based on the riveting demand management data to obtain riveting product design data; performing riveting process design based on the riveting product design data to obtain riveting process design data; and performing riveting production resource configuration based on the riveting process design data to obtain riveting production resource configuration data, so as to produce riveted products based on the riveting production resource configuration data.

[0072] It can be seen that in this application, riveting demand management data can be automatically obtained according to the riveting product project information, and then a riveting component design model can be established according to the riveting demand management data, and riveting product design is performed according to the riveting component design model to obtain riveting product design data, and riveting process design is further performed according to the riveting product design data to obtain riveting process design data, and then riveting production resources are further configured according to the riveting process design data to obtain riveting production resource configuration data, so that riveted products can be produced according to the riveting production scheduling data. In this application, automatic management of each link in the riveting manufacturing process can be realized, and data intercommunication of each link can be realized, with high management efficiency and high accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0073] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the prior art and the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0074] Figure 1 A schematic diagram of a process management method for riveting manufacturing provided by an embodiment of the present invention;

[0075] Figure 2 An architectural diagram of a riveting manufacturing process management system provided by an embodiment of the present invention;

[0076] Figure 3 A management flow chart of a riveting product demand management subsystem provided by an embodiment of the present invention;

[0077] Figure 4 A management flow chart of a riveting product design management subsystem provided by an embodiment of the present invention;

[0078] Figure 5 A management flow chart of a riveting process design management subsystem provided by an embodiment of the present invention;

[0079] Figure 6A management flow chart of a riveting production resource configuration management subsystem provided by an embodiment of the present invention;

[0080] Figure 7 A management flow chart of a riveting product quality management subsystem provided by an embodiment of the present invention;

[0081] Figure 8 A management flow chart of a supplier riveting product management subsystem provided by an embodiment of the present invention;

[0082] Figure 9 A management flow chart of a riveting full-process management data collection subsystem provided by an embodiment of the present invention;

[0083] Figure 10 A schematic structural diagram of a riveting manufacturing process management system provided by an embodiment of the present invention. DETAILED DESCRIPTION

[0084] The embodiments of the present invention provide a riveting manufacturing process management method, system, electronic device and computer-readable storage medium, which have high management efficiency and high accuracy during use.

[0085] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0086] It should be noted that with the application of steel and aluminum load-bearing, coated metal, titanium components and carbon fiber materials, the simultaneous application of diversified materials in the equipment manufacturing industry has become an important trend in the research and development of new products. Riveting technology has gradually become a more ideal connection method in the equipment manufacturing field. This method involves various links such as structural design, process development and actual production. The riveting manufacturing process also includes assembly, gluing, hole making, riveting and other fields. Therefore, the riveting process involves multi-link interaction and multi-field integration.

[0087] Riveting is a special process, and its connection quality has a significant impact on the function of the product. It requires full-process management from the aspects of contract riveting demand management, riveting design management, riveting process management, riveting production resource management, riveting quality management and riveting supplier management. At present, the management of the entire riveting process is relatively scattered. Traditional riveting manufacturing mainly relies on manual management of different links. There is no interaction between the links, and the experience and technology of designers, process engineers and manufacturing personnel involved in the entire process will affect the riveting quality. Due to the relatively large workload of each link, manual management is prone to errors, and it is impossible to obtain comprehensive element information for the entire process of single project process technology management, and there are gaps in the management of each link in the existing technology. The above problems are mainly caused by the inability to effectively interconnect data at each stage. Therefore, this application uses digital technology to improve the management efficiency of each link, break through the process barriers of each link, and realize the interoperability of data between each link.

[0088] Please refer to Figure 1 , Figure 1 A schematic diagram of a process management method for riveting manufacturing provided by an embodiment of the present invention. The process management method for riveting manufacturing includes:

[0089] S110: Determine riveting demand management data based on riveting product project information;

[0090] It should be noted that in actual application, this application can pre-establish a riveting product demand management subsystem, a riveting product design management subsystem, a riveting process design management subsystem, and a riveting production resource allocation management subsystem. Of course, it is also possible to pre-establish a riveting product quality management subsystem, a supplier riveting product management subsystem, and a riveting full-process management data collection subsystem.

[0091] In the embodiment of the present application, the riveting product demand management subsystem can be used to analyze the riveting product project information. For example, the riveting product project information can be obtained through the product project contract, and the demand data on the riveting technical requirements in the project information can be sorted and decomposed. Further, based on the demand data on the riveting technical requirements, the riveting demand management data can be determined, and the riveting demand management data can be used for the design of the riveted product.

[0092] S120: performing riveting product design on the riveting component design model established based on the riveting demand management data to obtain riveting product design data;

[0093] It should be noted that in this application, after obtaining the riveting requirement management data, a riveting component design model can be established based on the riveting requirement management data, and the riveting product design can be performed based on the riveting component design model through the riveting product design management subsystem to obtain the riveting product design data, so that the riveting process design can be performed based on the riveting product design data later.

[0094] S130: Perform riveting process design based on the riveting product design data to obtain riveting process design data;

[0095] It can be understood that in this embodiment, the riveting product design data output by the riveting product design management subsystem can be input into the riveting process design management subsystem, and the riveting process design management subsystem uses the riveting product design data to perform riveting process design to obtain riveting process design data.

[0096] S140: Perform riveting production resource configuration based on the riveting process design data to obtain riveting production resource configuration data, so as to produce riveted products based on the riveting production resource configuration data.

[0097] It should be noted that, in this embodiment, the riveting process design data output by the riveting process design management subsystem can be further input into the riveting production resource configuration management subsystem, and the riveting production resource configuration management subsystem uses the riveting process design data to perform riveting production resource configuration, thereby obtaining riveting production resource configuration data, so as to produce riveted products according to the riveting production configuration data.

[0098] Of course, after production is completed, the riveting product quality management subsystem can also be used to monitor and analyze the quality of riveted products, thereby obtaining riveting product quality data. The supplier riveting product management subsystem can be used to manage each supplier, and the riveting full-process management data collection subsystem can collect and centralize the data obtained from each link.

[0099] It can be seen that in this application, riveting demand management data can be automatically obtained according to the riveting product project information, and then a riveting component design model can be established according to the riveting demand management data, and riveting product design is performed according to the riveting component design model to obtain riveting product design data, and riveting process design is further performed according to the riveting product design data to obtain riveting process design data, and then riveting production resources are further configured according to the riveting process design data to obtain riveting production resource configuration data, so that riveted products can be produced according to the riveting production scheduling data. In this application, automatic management of each link in the riveting manufacturing process can be realized, and data intercommunication of each link can be realized, with high management efficiency and high accuracy.

[0100] The following combination Figures 2 to 9Further explanation and introduction of the technical solution.

[0101] In one embodiment, the process of determining the riveting requirement management data according to the riveting product project information in S110 may include:

[0102] Get riveting product project information;

[0103] It should be noted that, in this embodiment, the riveting product project information can be extracted through the riveting product project contract, wherein the riveting product project information may include vehicle model information and the like.

[0104] According to the vehicle model information in the riveting product project information, the riveting technical requirement information corresponding to the vehicle model information is matched from the product riveting technical requirement database;

[0105] Understandably, please refer to Figure 3 , a product riveting technical requirement database (i.e. Figure 3 The product contract riveting technical requirements database in the riveting product project information can be used to match the riveting technical requirements information corresponding to the vehicle model information from the product riveting technical requirements database according to the vehicle model information in the riveting product project information. The riveting technical requirements information can include at least two of the working condition requirement information, the riveting structure load-bearing requirement information, the riveting technical standard requirement information and the customer requirement information.

[0106] Determine whether the riveting technical requirement information is complete. If complete, match the riveting requirement management data corresponding to the riveting technical requirement information from the riveting requirement knowledge database based on the riveting technical requirement information; wherein the riveting technical requirement information includes working condition requirement information, riveting structure load-bearing requirement information, riveting technical standard requirement information, and customer requirement information; the riveting requirement knowledge database includes working condition requirement data, riveting structure load-bearing requirement data, riveting technical standard data, and customer-specific requirement data corresponding to different riveting technical requirement information;

[0107] It should be noted that after obtaining the riveting technology requirement information corresponding to the vehicle model information, it is possible to further determine whether the riveting technology requirement information is complete, that is, whether the working condition requirement information, riveting structure load-bearing requirement information, riveting technology standard requirement information and customer demand information have been completely extracted, and further determine whether the demand content in each demand information is reasonable. Here, the integrity of the riveting technology requirement information can be confirmed through expert review. When it is determined that the obtained riveting technology requirement information is complete, the specific demand data corresponding to each demand information in the riveting technology requirement information can be further matched from the riveting requirement knowledge database, that is, the working condition requirement data corresponding to the working condition requirement information, the riveting structure load-bearing requirement data corresponding to the riveting structure load-bearing requirement information, the riveting technology standard data corresponding to the riveting technology standard requirement information, and the customer-specific demand data corresponding to the customer demand information.

[0108] It should also be noted that if the riveting technical requirements information is incomplete, the riveting product project information can be re-extracted based on the project contract. Then, based on the new riveting product project information and the newly extracted vehicle model information, the riveting technical requirements information can be re-extracted from the product riveting technical requirements database to obtain new riveting technical requirements information. This can avoid omissions and other problems that may have occurred during the previous information extraction process. Alternatively, the missing riveting technical requirements information can be supplemented to obtain complete riveting technical requirements information.

[0109] Generate a riveting requirement management list based on the riveting requirement management data.

[0110] Based on the working condition demand data corresponding to the working condition demand information, the riveting structure load-bearing demand data corresponding to the riveting structure load-bearing demand information is determined, the riveting technical standard data corresponding to the riveting technical standard demand information is determined, and the customer-specific demand data corresponding to the customer demand information is determined, and a riveting demand management list is generated. That is, the riveting demand management list records the demand data of each phase of demand, so that the riveting product design can be better carried out based on more comprehensive demand data.

[0111] In one embodiment, the riveted product design data includes at least two of: fastener selection content information, riveting technology content information, riveting risk assessment content information, riveting design drawing information, and a riveted joint risk classification list;

[0112] Please note that, please refer to Figure 4 , pre-establish a riveted joint design database, a riveted fastener selection database, a riveted structure simulation calculation database, a riveted joint risk assessment database, a riveted product design drawing database and a riveted joint risk grading database in the riveted product design subsystem.

[0113] Then, the process of performing riveting product design on the riveting component design model established based on the riveting requirement management data to obtain riveting product design data in S120 may include:

[0114] Extracting data information from a component riveting design model, which is established based on the riveting requirements management data. That is, after obtaining the riveting requirements management data, the component riveting design model can be established based on the riveting requirements management data, and then the data information from the established component riveting design model can be further extracted.

[0115] Based on the data information, the riveted joint design information is matched with the riveted joint design database to obtain a riveted joint design result. It is understood that, in order to make the riveted joint design more accurate, the riveted joint design result in this application may include the joint type, the thickness of the connected parent material, the number of parent material layers, the order of each parent material layer, and the rivet type. The riveted joint design result can also be synchronously fed back to the component riveted design model design process based on the riveted joint design result, and the component riveted design model can be optimized to obtain a more accurate component riveted design model.

[0116] Based on the riveted joint design results, it is determined whether the riveted joint design meets the design standard requirements. If so, the riveted joint design parameters are determined based on the riveted joint design results. In other words, it is possible to further determine whether the riveted joint design results meet the design standard requirements. If not, the component riveted design model needs to be redesigned. If it does, the riveted joint design parameters can be further determined based on the riveted joint design results. Specifically, the specific parameter information or parameter values ​​of each element of the riveted joint can be obtained, and the riveted joint design results can be incorporated into simulation calculations. The design standard requirements are pre-established based on actual needs.

[0117] The type of riveted fastener that meets the fastener performance requirements is determined based on the riveted joint design parameters in combination with a riveted fastener selection database, and fastener selection content information is generated when the riveted fastener type meets the fastener performance requirements; the riveted fastener selection database stores the riveted fastener types corresponding to the riveted joint design parameters.

[0118] It should be noted that the selection of riveted fastener types (rivets, collars) is performed in a riveted fastener selection database based on the riveted joint design parameters. For example, the riveted fastener selection database may include pre-stored riveted fastener types corresponding to different riveted joint design parameters. After the riveted fastener type is determined, performance testing can be further performed on the rivets corresponding to the riveted fastener type according to relevant standards to obtain performance test results. Based on the performance test results, it can be determined whether the selected riveted fastener type meets the pre-set fastener performance requirements. If not, the riveted fastener type selection record can be generated and a selection report can be generated. The selection process can then be repeated until a riveted fastener type that meets the pre-set fastener performance requirements is selected. If the performance test results meet the pre-set fastener performance requirements, the selected riveted fastener type is determined to be acceptable for use. At this point, riveted fastener selection details can be generated. This riveted fastener selection details can be presented in the form of a riveted fastener selection report, and the selected riveted fastener performance parameters can also be incorporated into simulation calculations.

[0119] The component riveting design model is updated by using a riveted joint designed based on the riveted joint design parameters and a rivet determined based on the riveted fastener type selection to obtain a new component riveting design model. In other words, the structure and data information of the riveted joint designed based on the riveted joint design parameters and the rivet determined based on the riveted fastener type can be incorporated into the previously designed component riveting design model, thereby further improving the new component riveting design model.

[0120] Riveting simulation calculation is performed based on the new component riveting design model to generate riveting technical content information including riveting simulation calculation results.

[0121] It should be noted that after obtaining a new component riveting design model, a riveting simulation calculation can be further performed on the component riveting design model to obtain a riveting simulation calculation result, and then the riveting simulation calculation result can be introduced into the riveting result simulation calculation database. In this application, it can also be determined whether the riveting technology simulation data in the riveting technology simulation calculation result meets the corresponding model design requirements. If not, the simulation results can be recorded and a riveting technology report can be generated, and then the riveting joint design, fastener selection and design model simulation calculation can be re-performed; if the requirements are met, riveting technology content information including riveting joint design, riveting fastener type and riveting simulation calculation results can be further generated, wherein the riveting technology content information can be presented in the form of a riveting technology report.

[0122] According to the riveting simulation calculation results, a risk level assessment is performed from the riveted joint risk assessment database to determine the corresponding risk level result, and the riveting risk assessment content information of the riveted parts is generated according to the risk level result.

[0123] It will be appreciated that in this embodiment, risk levels can be assessed in a riveted joint risk assessment database based on the riveting simulation calculation results. Risk levels can be categorized as high risk (H), medium risk (M), and low risk (L). The riveted joint risk database stores risk levels corresponding to different riveting simulation calculation results. After determining the corresponding risk level results from the riveted joint risk database based on the riveting simulation calculation results, riveted risk assessment content information can be generated for each riveted component based on the risk level results. In other words, riveted risk assessment content information corresponding to each riveted component can be generated, and this riveted risk assessment content information can be presented in the form of a riveted risk assessment report.

[0124] Based on the riveting risk assessment content information and the riveting product design drawing database, the riveting design drawing information is determined. The riveting design drawing information carries the size information, fastener information, risk level and installation information of each riveted joint.

[0125] Specifically, after obtaining the riveting risk assessment content information, the riveting design drawing information can be further determined in the riveting product design drawing database based on the riveting risk assessment content information (i.e., the riveting risk assessment report), wherein the riveting product design drawing database can pre-store riveting product design drawing information corresponding to different riveting risk assessment content information. The riveting design drawing information can be a riveting design drawing, and the determined riveting design drawing is marked with the size information, fastener information, risk level, and installation information of each riveted joint to better guide production.

[0126] According to the riveting design drawing information and the riveted joint risk classification database, a riveted joint risk classification list for each riveted joint is generated.

[0127] It should be noted that in actual applications, a riveted joint risk grading database can be pre-established. This database stores a risk grading list of riveted joints corresponding to different riveted design drawings. Based on the riveted design drawing information, a risk grading list for each riveted joint is determined in the riveted joint risk grading database (for example, it may include drawing number information, riveted joint information, connected material information, fastener information, hole making information, force information, and risk level). A riveted joint risk assessment report is then generated for each riveted component, i.e., a riveted joint risk assessment report corresponding to each riveted component is generated. This riveted joint risk assessment report includes the contents of the risk grading list to better guide production and improve riveted joint quality.

[0128] It should also be noted that the riveted joint risk classification list obtained in this embodiment can also be fed back to the product riveting technical requirements management subsystem to guide the optimization and improvement of the product riveting technical requirements management subsystem.

[0129] In one embodiment, the riveting process design data includes at least two of: riveting assembly simulation content information, riveting operation content information, riveting joint summary file, riveting process evaluation report, and riveting process specification;

[0130] like Figure 5 As shown, a riveting component assembly simulation database, a riveting process equipment database, a riveting fastener database, a riveting joint summary database, a riveting process evaluation management database and a riveting process procedure management database are pre-established in the riveting process design management subsystem.

[0131] Then, the process of performing riveting process design based on the riveting product design data in S130 to obtain the riveting process design data may specifically include:

[0132] According to the riveting process assembly model established based on the riveting design drawing information, the riveting assembly process is formulated in combination with the riveting component assembly simulation database to obtain the riveting assembly process formulation data; the riveting assembly process formulation data includes component dimensions and tolerances, positioning and clamping methods, component assembly sequence, and rivet riveting sequence.

[0133] It should be noted that, in the embodiment of the present application, the riveted component assembly simulation database may include riveted assembly process formulation data corresponding to data of different riveted process assembly models. Therefore, a riveted process assembly model may be established based on the riveted design drawing information, and a riveted assembly process may be formulated from the riveted component assembly simulation database based on the riveted process assembly model. For example, by analyzing the component dimensions and tolerances in the riveted process assembly model, formulating the positioning and clamping method, formulating the component assembly sequence, and formulating the rivet riveting sequence, the riveted assembly process formulation data may be determined. These riveted process assembly formulation data may include component dimensions and tolerances, positioning and clamping methods, component assembly sequence, and rivet riveting sequence, thereby determining more comprehensive riveted assembly process formulation data. Obtain the assembly simulation results obtained by performing assembly simulation calculations based on the riveted assembly process formulation data, and generate riveted assembly simulation content information if the assembly simulation results meet the assembly requirements;

[0134] Specifically, in actual applications, the determined riveting assembly process formulation data can be used to perform assembly simulation calculations in third-party riveting assembly software to obtain assembly simulation results. It is further determined whether the assembly simulation results meet the pre-determined assembly requirements. If it is determined that the assembly simulation results do not meet the assembly requirements, the simulation results can be recorded to form a report, and the assembly process can be further optimized based on the simulation results; if the assembly requirements are met, riveting assembly simulation content information can be generated, wherein the riveting assembly simulation content information can be specifically presented in the form of an assembly simulation report. Based on the riveting assembly simulation content information, the riveting operation content information is determined;

[0135] In this embodiment, after obtaining the riveting assembly simulation content information (i.e., the riveting assembly simulation report), riveting operation content information (i.e., the riveting operation instruction report) can be further generated based on the riveting assembly simulation report. The riveting assembly simulation report can include equipment information, firmware information, fastener information, etc.

[0136] Determine the riveting process equipment information based on the equipment information in the riveting operation content information and the riveting process equipment database;

[0137] It can be understood that in the embodiment of the present application, the riveting process equipment database can pre-store riveting process equipment information corresponding to different equipment information, so that the corresponding riveting process equipment information can be matched from the riveting process equipment database according to the equipment information in the riveting operation content information. The riveting process equipment information may include equipment type, equipment name, equipment identification code, etc., so as to better determine the corresponding riveting process equipment according to the riveting process equipment information for subsequent riveting process manufacturing.

[0138] Determine the riveted fastener information based on the fastener information in the riveting operation content information and the riveted fastener database;

[0139] The riveted fastener database in the embodiment of the present application may pre-store riveted fastener information corresponding to different fastener information, or store riveted fastener information corresponding to different riveted fasteners, wherein the fastener information may include information such as fastener type, fastener identification code, fastener size, etc. The riveted fastener information may include information such as fastener identification code, fastener type, fastener size, etc., so that the corresponding riveted fastener information can be accurately determined from the riveted fastener database based on the fastener information, and the corresponding riveted fastener can be determined based on the riveted fastener information for subsequent riveting process manufacturing.

[0140] Based on the riveted design information and the riveted joint risk classification list, the riveted joint elements are summarized in combination with the riveted joint summary database to obtain a riveted joint summary file including the riveted joint element information;

[0141] It should be noted that in this embodiment, riveted joints can be summarized in a riveted joint summary database, with riveted design drawings and riveted risk graded joint list as input, and riveted joint element information can be obtained by parsing the key elements of the riveted joints. For example, the basic information of the joints, the combination of parent materials, and the risk level in the riveted design drawings and the riveted risk graded joint list can be parsed according to the riveted joints, wherein the basic information of the joints may include the type of joint, the joint diagram, the number of riveted layers, etc. In this application, the assembly clearance and the hole making process can also be determined according to the assembly requirements, and then the corresponding riveting tools and rivet information can be obtained from the process equipment database and the riveted fastener database according to the assembly clearance and the hole making process. After obtaining the riveted joint element information and the riveting information and the rivet information, a riveted joint summary file can be generated according to the riveted joint element information and the riveting information and the rivet information, and the riveted joint summary file can be stored in the riveted joint summary database.

[0142] According to the riveting design information and the riveting joint risk classification list, combined with the riveting process assessment management database, determine the riveting process assessment items and the riveting process assessment methods corresponding to each riveting process assessment item;

[0143] In practical applications, the corresponding riveting process assessment items and the riveting process assessment methods corresponding to each riveting process assessment item can be extracted from the riveting process assessment management database based on the riveting design drawing information and the riveting joint risk grading list. The riveting process assessment management database pre-stores the riveting process assessment items corresponding to various riveting key elements of the riveted joint and the riveting process assessment methods corresponding to each riveting process assessment item. Specifically, the key elements corresponding to the riveted joint can be extracted from the riveting design drawing information and the riveting joint risk grading list, and then, based on each key element, the corresponding riveting process assessment items and the riveting process assessment methods corresponding to each riveting process assessment item can be matched from the riveting process assessment management database.

[0144] Determine the riveting process assessment result according to the riveting process assessment method, and generate a riveting process assessment report if the riveting process assessment result is qualified;

[0145] It should be noted that after determining the various riveting process assessment items and the riveting process assessment method corresponding to each riveting process assessment item, the riveted joint can be subjected to process assessment according to the determined riveting process assessment method to obtain the riveting process assessment result, and then further verify whether the riveting process assessment result is qualified. If it is unqualified, the assessment result is recorded and an assessment report is generated. The reason for the unqualified riveting process assessment result may be that the assessment method is inappropriate, so the assessment method can be re-established and a new assessment can be performed; if it is qualified, the assessment process and the assessment results of each riveting process assessment item in the assessment process can be recorded, and a riveting process assessment report can be generated. The riveting process assessment report may include the report number, the key element information of the riveted joint, and the assessment content and assessment results corresponding to each key element information.

[0146] Among them, the verification of whether the riveting process assessment results are qualified can be carried out by verifying whether the forming dimensions meet the appearance inspection standards after riveting, whether the cross-sectional quality of the riveted joint meets the internal quality standards of the riveted joint, and whether the mechanical properties such as tensile shear performance, pull-off performance, and torsional performance meet the performance indicators of each joint provided in the riveted joint risk grading list. If each item meets the corresponding standards or indicators, it means that the riveting process assessment result is qualified; otherwise, it means that the riveting process assessment result is unqualified.

[0147] According to the riveting process assessment report and the riveting process procedure management database, the riveting process procedure corresponding to the riveted joint is generated.

[0148] Specifically, after obtaining the riveting process assessment report, the riveting process procedure management database can further generate a riveting process procedure corresponding to the riveted joint according to a pre-established riveting process procedure template combined with the element information of the riveted joint and the corresponding riveting process assessment report.

[0149] Through the above analysis, it can be seen that the riveting process management subsystem in this application can quickly and accurately determine the riveting process design data, and output riveting assembly simulation reports, riveting operation instructions, riveting joint summaries, riveting process assessments, riveting process procedures and other document information for use in the next link of riveting production resource allocation.

[0150] In one embodiment, the riveting production resource configuration data may include: at least two of: a personnel configuration list, a process method configuration list, a riveting process equipment configuration list, a riveting fastener configuration list, a skill confirmation record, a process method validity confirmation record, a process equipment capability confirmation record, and a fastening performance confirmation record;

[0151] Please refer to Figure 6 The riveting production resource configuration management subsystem includes personnel configuration management database, process configuration management database, process equipment configuration management database and material configuration management database.

[0152] The riveting operation content information (ie, the riveting operation instruction) may also include personnel qualification requirement information and equipment requirement information.

[0153] Then, the process of performing riveting production resource configuration based on the riveting process design data in S140 to obtain riveting production resource configuration data may specifically include:

[0154] Based on the personnel qualification requirements in the riveting operation content information (i.e., the riveting operation instructions), the personnel for riveting operation are configured in conjunction with the personnel configuration management database, and a personnel configuration list is determined; the personnel configuration list includes information on each skilled personnel;

[0155] Skills appraisal shall be conducted for each skilled worker, and a skill confirmation record shall be formed for the skilled workers if the skills appraisal of each skilled worker is qualified.

[0156] It should be noted that the riveting operation personnel are determined in the personnel configuration management database according to the personnel qualification requirements information in the riveting operation instruction, and a personnel configuration list is obtained, so that the corresponding skilled personnel can be determined according to the information of each skilled personnel in the personnel configuration list. Then, in order to determine whether the ability of the skilled personnel meets the standards, the skills of the skilled personnel can be regularly appraised and the skills appraisal results can be obtained. Then, based on the skills appraisal results, it is judged whether the skills of the skilled personnel are qualified. If unqualified, the appraisal results are recorded, and the skills appraisal can be carried out again after training. If qualified, the results can be recorded and a personnel skill confirmation record can be generated, wherein the personnel skill determination record can include skilled personnel information, various assessment items, and the assessment results corresponding to each assessment item.

[0157] Configure the riveting process method according to the riveting process regulations and the process configuration management database, and determine the process method configuration list;

[0158] The riveting process assessment and verification is carried out according to the process method in the process method configuration list to obtain the riveting process assessment and verification results. If the riveting process assessment and verification results are qualified, a process method validity confirmation record is generated.

[0159] It should be noted that in this embodiment, riveting process methods can also be configured in the process configuration management database according to the riveting process regulations to form a corresponding process method configuration list, which includes various process methods and process requirements. After obtaining the process method configuration list, in order to determine whether the validity of the process methods and process requirements meet the corresponding validity requirements, the newly added process methods and process requirements can be validated through the riveting process assessment verification implementation method to obtain a riveting process assessment verification result, and further determine whether the riveting process assessment verification result is qualified. If the riveting process assessment verification result is unqualified, the assessment result is recorded. If the riveting process assessment verification result is qualified, the riveting process assessment verification result is recorded, and a process method validity confirmation record can also be generated. In addition, the process assessment report corresponding to the riveting process assessment can also be stored in the riveting process assessment subsystem to continuously improve the database of the riveting process assessment subsystem.

[0160] According to the equipment requirement information in the riveting operation content information, the riveting process equipment is configured in combination with the process equipment management database to generate a riveting process equipment configuration list;

[0161] Perform riveting test verification on each riveting process equipment in the riveting process assembly configuration list to obtain the riveting process equipment test verification results, and generate a process equipment capability confirmation record if the riveting process equipment test verification results are qualified.

[0162] It should be noted that in this embodiment, the riveting process equipment can be configured from the process equipment management database based on the equipment requirement information in the riveting operation content information, and the information of each riveting process equipment can be determined. A riveting process equipment configuration list is generated based on the information of each riveting process equipment. In order to determine whether each riveting process equipment meets the equipment requirements so that the product can operate stably and long-term, it is necessary to confirm the capability of the riveting process equipment. In this case, a riveting test can be performed on the riveting process equipment to obtain a riveting process equipment test verification result. Based on the test verification result, it is determined whether the capability of the riveting process equipment is qualified. If it is unqualified, the test verification result is recorded, and the process equipment is repaired or replaced before the test verification is performed again. If it is qualified, the test verification result is recorded, and a process equipment capability confirmation record is formed based on the riveting process equipment information and the riveting process equipment test verification result. In this way, in the actual process manufacturing process, the process equipment used in the manufacturing process can be quickly and intuitively determined based on the process equipment capability confirmation record to ensure the quality of the manufactured product.

[0163] According to the riveting process regulations and the material configuration management database, the riveting fasteners are configured and a riveting fastener configuration list is generated.

[0164] Perform a fastener performance test on each riveted fastener in the riveted fastener configuration list to obtain a fastener performance test result, and generate a fastening performance confirmation record if the fastener performance test result is qualified.

[0165] It should be noted that in actual applications, riveted fastener configuration can be performed in the material configuration management database according to the riveting process specifications to determine each riveted fastener, and a riveted fastener configuration list can be generated based on each riveted fastener. In other words, the riveted fastener configuration list can include information about each riveted fastener. In this application, in order to determine whether the performance of the riveted fastener meets the fastener performance requirements, the performance of each configured fastener can be confirmed. Specifically, a fastener performance test can be performed on each fastener to obtain a corresponding fastener performance test result. Then, based on the fastener performance test result, it is determined whether the performance of the corresponding fastener meets the performance requirements. If it does not meet the performance requirements, the fastener performance test result is recorded, and a new fastener is replaced and then the performance test is performed again. If it meets the requirements, the fastener performance test result is recorded, and a fastener performance confirmation record corresponding to the fastener is generated. In the subsequent actual manufacturing process, the required fastener can be quickly and intuitively determined based on the fastener performance confirmation record, thereby better ensuring the product quality of the manufactured product.

[0166] It is understood that the riveting production resource allocation management subsystem in this application can quickly and efficiently determine the production resource allocation table and riveting process confirmation records for various resources required in the production process, thereby better guiding the actual production process. The production resource allocation table includes a personnel allocation list, a process method allocation list, a riveting process equipment allocation list, and a riveting fastener allocation list. The riveting process confirmation record may include the aforementioned fastening performance confirmation record.

[0167] In one embodiment, the method may further include:

[0168] The riveting product quality analysis is performed based on the riveting process design data to obtain the riveting product quality data.

[0169] It is understandable that in this application, the quality of the prepared product can also be confirmed to determine whether the quality of the riveted product is qualified, so as to further ensure the long-term stable operation of the riveted product.

[0170] Among them, the riveting product quality data includes: riveting assembly dimension records, riveting hole dimension records, riveting force displacement records and riveting forming quality records;

[0171] In this embodiment, a riveting component assembly quality management database, a riveting hole preparation quality management database, a riveting riveting process quality management database, and a riveting rivet forming quality management database are pre-established in the riveting product quality management subsystem.

[0172] It should be noted that the riveting operation content information in the embodiment of the present application may also include information such as assembly dimensions and positioning point information, hole making dimensions and hole making steps, riveting force displacement tolerance zone, and inspection quality requirements.

[0173] Then, the process of performing riveting product quality analysis based on riveting process design data to obtain riveting product quality data may include:

[0174] Determine assembly inspection points based on assembly dimensions and positioning point information in the riveting operation content information and in combination with the riveted component assembly quality management database;

[0175] The assembly dimension quality is confirmed based on the assembly inspection items, the assembly dimension measurement data is obtained, and it is determined whether the assembly dimension measurement data meets the preset assembly dimension range. If so, a riveting assembly dimension record is generated.

[0176] It should be noted that when conducting a quality analysis of a product, the assembly inspection items can be determined in the riveted component assembly quality management database based on the assembly dimensions and positioning point information in the riveting operation instructions, and then the assembly dimension quality of each assembly inspection item can be confirmed. For example, the assembly dimension measurement data of each assembly inspection item can be obtained by measuring the assembly dimension of each assembly inspection item, and then the assembly dimension measurement data of the assembly inspection item can be compared with a pre-set preset assembly dimension range. If the assembly dimension measurement data is within the preset assembly dimension range, it means that the assembly dimension is qualified, the measurement result can be recorded, and a riveted assembly dimension record can be generated. If the assembly dimension measurement data is not within the preset assembly dimension range, it means that the assembly dimension is unqualified, and the assembly measurement result can be recorded so that the staff can be notified to make assembly adjustments to the product and then measure the dimensions again to ensure that the assembly dimension meets the requirements, so as to better ensure product quality.

[0177] According to the hole making size and hole making steps in the riveting operation content information, combined with the riveting hole preparation quality management database, the hole making inspection points are determined;

[0178] The hole size quality is confirmed according to the hole inspection items, the hole size measurement data is obtained, and it is determined whether the hole size measurement data meets the preset hole size range. If so, a riveting hole size record is generated.

[0179] It should be noted that in this embodiment, the hole making inspection items can be determined in the rivet hole preparation quality management database based on the hole making size and hole making steps in the riveting operation instruction manual, and then the hole making size quality can be confirmed for each hole making inspection item. For example, the hole making size of each hole making inspection item can be measured to obtain corresponding hole making size measurement data, and then the hole making size measurement data can be compared with a pre-set preset hole making size range. If the hole making size measurement data is within the preset hole making size range, it means that the hole making size of the hole making inspection item is qualified, and the measurement result can be recorded and a riveted hole making size record can be generated. If the hole making size measurement data is not within the preset hole making size range, it means that the hole making size of the hole making inspection item is unqualified, and the measurement result can be recorded so that the staff can be notified to make corrections to the hole making before the hole making size measurement is performed to ensure that the hole size is qualified and the product quality is ensured.

[0180] Determine the riveting force displacement monitoring strategy based on the riveting force displacement tolerance zone in the riveting operation content information and the riveting process quality management database;

[0181] The riveting process quality is confirmed according to the riveting force displacement monitoring strategy to obtain the riveting process monitoring results. When the riveting process monitoring results meet the preset riveting process requirements, the riveting force displacement monitoring records are generated.

[0182] It should be noted that in this embodiment, a riveting force-displacement monitoring strategy is determined in the riveting process quality management database based on the riveting force-displacement tolerance bands in the riveting operation manual. The riveting process quality management database stores riveting force-displacement monitoring strategies corresponding to different riveting force-displacement tolerance bands. The riveting process quality is then confirmed based on the riveting force-displacement monitoring strategy. For example, the riveting process can be monitored based on the riveting force-displacement monitoring strategy to obtain riveting process monitoring results. A riveting force-displacement curve is then generated based on the riveting process monitoring results and compared with a standard process window (i.e., a standard riveting force-displacement range) to determine whether the riveting force-displacement curve is within the standard riveting force-displacement range. If the riveting force-displacement curve is within the standard riveting force-displacement range, the riveting process is qualified, and the riveting process monitoring results can be recorded and a riveting force-displacement monitoring record generated. If the riveting force-displacement curve is not within the standard riveting force-displacement range, the riveting process is unqualified. The measurement results can also be recorded, and the staff can be notified to re-rivet and then conduct process monitoring.

[0183] Determine the riveting forming inspection items based on the inspection quality requirements in the riveting operation content information and the riveting rivet forming quality management database;

[0184] The riveting forming quality is confirmed according to the riveting forming inspection items, the riveting forming measurement data is obtained, and it is determined whether the riveting forming measurement data is within the preset riveting forming size range. If so, a riveting forming quality record is generated.

[0185] It should be noted that according to the inspection quality requirements in the riveting operation instruction manual, the riveting forming inspection items are determined in the riveting rivet forming quality management database, and the riveting forming quality is confirmed. For example, it can be carried out by implementing the forming quality inspection, and the forming quality inspection is carried out on each riveting forming inspection item to obtain the riveting forming measurement data, such as the rivet size measurement data, etc., and it is judged whether the riveting forming measurement data is within the preset riveting forming size range. If it is within the preset riveting forming size range, it means that the riveting forming quality is qualified, the inspection results can be recorded, and the riveting forming quality record can be generated; if it is not within the preset riveting forming size range, it means that the riveting forming quality is unqualified, and the staff can be notified to re-rivet and then conduct inspection to ensure the quality of the riveting forming.

[0186] In one embodiment, the method may further include:

[0187] Determine the riveting capability assessment factors based on the current supplier's capability assessment application requirements and the supplier's riveting capability assessment database;

[0188] The riveting capability of the current supplier is evaluated according to the riveting capability evaluation factors to obtain a supplier riveting capability evaluation result, and if the supplier riveting capability evaluation result is qualified, a supplier riveting capability evaluation record is generated.

[0189] It should be noted that a supplier riveting product management subsystem can also be set up in this application, and the supplier riveting product subsystem data used by different suppliers are relatively independent and do not affect each other. The supplier riveting product management subsystem includes a supplier riveting capability assessment database, a supplier product demand management database, a supplier product riveting design database, a supplier product riveting process database, a supplier product start-up inspection database, and a supplier product riveting quality database. For details, please refer to Figure 8 The input of the supplier riveting product subsystem is technical requirements such as capability assessment application and external supply technology agreement. Among them, the supplier product demand management database, supplier product riveting design database, supplier product riveting process database, supplier product start-up inspection database and supplier product riveting quality database have the same functions as the product demand management subsystem, riveting product design management subsystem, riveting process design management subsystem, riveting production resource allocation management subsystem and riveting product quality management subsystem recorded in the above embodiment.

[0190] Specific examples Figure 8 As shown, for newly included current suppliers, the capability assessment application requirements provided by them can be obtained. Then, based on the capability assessment application requirements, riveting capability assessment factors can be formulated in the supplier riveting capability assessment database, and the supplier's riveting capability can be confirmed. For example, the supplier's riveting capability can be evaluated based on the formulated riveting capability assessment factors. Based on the supplier evaluation results, it is determined whether the current supplier's riveting capability is qualified. If it is unqualified, the evaluation results are recorded, and the supplier continues to optimize and improve its riveting capability before re-evaluation. If it is qualified, the supplier's riveting capability evaluation is recorded. Among them, only suppliers that pass the capability assessment can carry out product riveting business.

[0191] In addition, a riveting requirements list can be sorted in the supplier's product demand management database based on the riveting outsourcing technology agreement. If the riveting requirements list is incomplete, it is re-sorted. If the riveting requirements list is complete, the next step is entered. It should be noted that the process of determining the riveting requirements list based on the supplier's product demand management database in this embodiment can refer to the relevant description of the product demand management subsystem in the above embodiment, which is not repeated in this embodiment. Then, a riveting technical requirements analysis is conducted based on the riveting requirements list. Riveting requirements management requirements are generated based on the technical requirements analysis. A component riveting design model is designed based on the new riveting requirements management requirements. Based on the model design, a riveting fastener selection report is generated in the supplier's product riveting design database. Riveting structure simulation calculations are performed to generate a report. A riveting joint risk assessment is performed to generate a report. Riveting pattern design is performed to generate corresponding riveting design drawing information (i.e., riveting design drawings). Then, a riveting joint risk classification list is generated based on the risk classification. A riveting process assembly model is designed based on the riveting design drawing information. Riveting assembly simulation is performed to generate riveting work instructions. According to the riveting design drawing information and the riveting joint risk classification list, the riveted joints are summarized to generate a riveted joint summary. Furthermore, riveting process assessment items are formulated, and assessment tests are conducted on the riveting process assessment items. The corresponding riveting process assessment report is formulated, and then the riveting process procedures are generated based on the riveting process assessment report. After the process is completed, the start-up inspection materials are prepared in the supplier's product start-up inspection database, which may include: riveted joint details, riveting process assessment, riveting process procedures, riveting assembly operation instructions, personnel capability certificates, material quality certificates, equipment capability certificates, etc. After the supplier completes the preparation of the start-up inspection materials, it can initiate the start-up inspection process to the first party for approval. If the supplier's start-up inspection materials are determined to not meet the requirements through approval by the first party, the supplier can also supplement the start-up inspection materials and review them again. If they meet the requirements, the supplier's start-up inspection record is formed and riveting production can be started. The supplier's riveting product quality database includes the following: assembly inspection items, measurement of riveted product assembly dimensions, and generation of riveted assembly dimension records; hole-making inspection items, measurement of riveted hole dimensions, and generation of riveted hole-making dimension records; riveting process monitoring strategies, riveting process inspections, and generation of riveting force-displacement monitoring records; and riveting forming inspection items, rivet forming quality inspections, and generation of riveting forming quality records, enabling the supplier to manage the entire riveting process. The data output by the supplier's riveting product management subsystem includes: supplier capability assessment, demand management list, supplier riveting design (including: fastener selection report, riveting technical report, risk assessment report, riveting design drawings, and riveted joint grading list); supplier riveting process (including riveting assembly simulation report, riveting operation instructions, riveted joint summary, riveting process assessment, and riveting process regulations); supplier start-up inspection records; and supplier quality records.

[0192] In one embodiment, the method may further include:

[0193] The riveting demand management data, riveting product design data, riveting process design data, riveting production resource configuration data and riveting product quality data are stored in the corresponding database corresponding to the riveting product project information for data collection, and a project riveting report corresponding to the riveting product project is generated.

[0194] It should be noted that if Figure 9 As shown, the present application may also include a riveting full-process management data collection subsystem, which collects the project riveting data generated by the subsystems of the previous links together to facilitate project management of product projects. The riveting full-process management data collection subsystem may include a product-based riveting full-process management data collection database, with all data collected in data package 7. The data collection process may include: selecting a product project, and extracting project data corresponding to the product project from the riveting demand management data (data package 1), riveting product design data (data package 2), riveting product process data (data package 3), riveting production resource data (data package 4), riveting product quality data (data package 5), and supplier riveting product data (data package 6) to complete the project data collection for the product project. To ensure the completeness of the project data, the collected project data may be further determined to be complete. If incomplete, it may be further supplemented and improved. If complete, a project riveting report may be generated and output to allow staff to manage the product project based on the project riveting report.

[0195] It is understandable that the embodiments of the present invention have developed an information technology-based management system for seven aspects: riveting product demand management, riveting product design management, riveting process design management, riveting production resource allocation management, riveting product quality management, supplier riveting product management, and the collection of riveting full-process management data. This has formed a digital management method that addresses problems such as uneven development of various links, poor connection between links, high manufacturing costs throughout the entire manufacturing process, lack of process control measures, and difficulty in collecting riveting data throughout the entire process. By using digital technology to improve the efficiency of each link, break down the process barriers of each link, establish the input and output relationship of each process, collect product riveting full-process management data, and achieve efficient data interconnection between design, process, production, quality, and supplier riveting data requirements, forming a riveting full-process management system with self-iterative improvement capabilities, which is conducive to improving the management efficiency and quality of the riveting full process and improving product quality.

[0196] See Figure 10 , Figure 10This is a structural diagram of a riveting manufacturing process management system provided by the present invention, which may include:

[0197] The riveting product demand management subsystem 11 is used to determine riveting demand management data based on the riveting product project information;

[0198] The riveting product design management subsystem 12 is used to perform riveting product design on the riveting component design model established based on the riveting demand management data to obtain riveting product design data;

[0199] The riveting process design management subsystem 13 is used to perform riveting process design based on the riveting product design data to obtain riveting process design data;

[0200] The riveting production resource configuration management subsystem 14 is used to configure riveting production resources based on the riveting process design data, and obtain riveting production resource configuration data so as to produce riveted products based on the riveting production resource configuration data.

[0201] In one embodiment, the riveted product design data includes at least two of: fastener selection content information, riveting technology content information, riveting risk assessment content information, riveting design drawing information, and a riveted joint risk classification list;

[0202] The riveting product design management subsystem 12 includes:

[0203] A first acquisition module is used to extract data information of a component riveting design model, where the component riveting design model is established based on the riveting requirement management data;

[0204] A first matching module is configured to match the riveted joint design information based on the data information and a riveted joint design database to obtain a riveted joint design result;

[0205] a first judging module, configured to judge whether the design of the riveted joint meets the design standard requirements based on the riveted joint design result, and trigger a first determining module if it meets the requirements;

[0206] A first determining module is used to determine the riveted joint design parameters according to the riveted joint design result;

[0207] a second determining module, configured to determine a riveted fastener type that meets the fastener performance requirements based on the riveted joint design parameters in combination with a riveted fastener selection database, and generate fastener selection content information if the riveted fastener type meets the fastener performance requirements; the riveted fastener selection database storing riveted fastener types corresponding to the riveted joint design parameters;

[0208] a third determining module, configured to update the component riveting design model by using a riveted joint designed based on the riveted joint design parameters and a rivet determined based on the riveted fastener type selection, to obtain a new component riveting design model;

[0209] A first calculation module is configured to perform riveting simulation calculation based on the new component riveting design model, and generate riveting technical content information including riveting simulation calculation results;

[0210] a first assessment module, configured to perform a risk level assessment from a riveted joint risk assessment database based on the riveting simulation calculation result, determine a corresponding risk level result, and generate riveting risk assessment content information of the riveted component based on the risk level result;

[0211] a fourth determination module, configured to determine riveting design drawing information based on the riveting risk assessment content information and a riveting product design drawing database, wherein the riveting design drawing information carries dimension information, fastener information, risk level, and installation information of each riveted joint;

[0212] The first generating module is used to generate a riveted joint risk grading list for each riveted joint according to the riveted design drawing information and a riveted joint risk grading database.

[0213] In one embodiment, the riveted joint design result includes at least two of the following: joint type, thickness of connected parent materials, number of parent material layers, order of each layer of parent material, and rivet type.

[0214] In one embodiment, the riveting process design data includes at least two of: riveting assembly simulation content information, riveting operation content information, riveting joint summary file, riveting process evaluation report, and riveting process specification;

[0215] Then, the riveting process design management subsystem 13 includes:

[0216] A first formulation module is configured to formulate a riveting assembly process based on a riveting process assembly model established based on the riveting design drawing information and in combination with a riveting component assembly simulation database, thereby obtaining riveting assembly process formulation data; the riveting assembly process formulation data includes component dimensions and tolerances, positioning and clamping methods, component assembly sequence, and rivet riveting sequence;

[0217] A second acquisition module is configured to acquire an assembly simulation result obtained by performing an assembly simulation calculation based on the riveting assembly process data, and generate riveting assembly simulation content information if the assembly simulation result meets the assembly requirements;

[0218] a fifth determining module, configured to determine riveting operation content information based on the riveting assembly simulation content information;

[0219] A sixth determining module, configured to determine riveting process equipment information based on the equipment information in the riveting operation content information and a riveting process equipment database;

[0220] a seventh determining module, configured to determine the riveted fastener information based on the fastener information in the riveting operation content information and a riveted fastener database;

[0221] a summarizing module, configured to summarize riveted joint elements according to the riveted design drawing information and the riveted joint risk grading list in combination with a riveted joint summary database, and obtain a riveted joint summary file including riveted joint element information;

[0222] an eighth determination module, configured to determine, based on the riveting design information and the riveting joint risk classification list, a riveting process assessment item and a riveting process assessment method corresponding to each riveting process assessment item in combination with a riveting process assessment management database;

[0223] a second generating module, configured to determine a riveting process assessment result according to the riveting process assessment method, and generate a riveting process assessment report if the riveting process assessment result is qualified;

[0224] The third generating module is used to generate a riveting process specification corresponding to the riveted joint according to the riveting process evaluation report and the riveting process specification management database.

[0225] In one embodiment, the riveting production resource configuration data includes: at least two of: a process method configuration list, a riveting process equipment configuration list, a riveting fastener configuration list, a process method validity confirmation record, a process equipment capability confirmation record, and a fastening performance confirmation record;

[0226] The riveting production resource configuration management subsystem 14 includes:

[0227] A ninth determining module is configured to configure riveting process methods according to the riveting process regulations in combination with a process configuration management database, and determine a process method configuration list;

[0228] a tenth determination module, configured to perform riveting process assessment verification according to the process method in the process method configuration list, obtain a riveting process assessment verification result, and generate a process method validity confirmation record if the riveting process assessment verification result is qualified;

[0229] a fourth generating module, configured to configure riveting process equipment according to the equipment requirement information in the riveting operation content information and in combination with a process equipment management database, and generate a riveting process equipment configuration list;

[0230] a fifth generating module, configured to perform riveting test verification on each riveting process equipment in the riveting process assembly configuration list, obtain riveting process equipment test verification results, and generate a process equipment capability confirmation record if the riveting process equipment test verification results are qualified;

[0231] A configuration module, configured to configure riveted fasteners according to the riveting process specifications in combination with a material configuration management database, and generate a riveted fastener configuration list;

[0232] The sixth generating module is configured to perform a fastener performance test on each riveted fastener in the riveted fastener configuration list to obtain a fastener performance test result, and generate a fastening performance confirmation record if the fastener performance test result is qualified.

[0233] In one embodiment, the device further comprises:

[0234] The riveting quality management subsystem is used to perform riveting product quality analysis based on the riveting process design data to obtain riveting product quality data.

[0235] In one embodiment, the riveted product quality data includes at least two of: riveted assembly dimension records, riveted hole dimension records, riveted force displacement records, and riveted forming quality records;

[0236] Riveting quality management subsystem, including:

[0237] an eleventh determination module, configured to determine assembly inspection points based on the assembly dimensions and positioning point information in the riveting operation content information and in combination with a riveted component assembly quality management database;

[0238] a second judgment module, configured to perform assembly dimension quality confirmation based on the assembly inspection items, obtain assembly dimension measurement data, and determine whether the assembly dimension measurement data meets a preset assembly dimension range; if so, triggering a seventh generation module;

[0239] The seventh generation module is used to generate riveting assembly dimension records;

[0240] a twelfth determination module, configured to determine hole making inspection items based on the hole making dimensions and hole making steps in the riveting operation content information and in combination with a rivet hole preparation quality management database;

[0241] a third judgment module, configured to confirm the hole size quality according to the hole making detection item, obtain hole making size measurement data, and determine whether the hole making size measurement data meets a preset hole making size range, and if so, trigger an eighth generation module;

[0242] The eighth generation module is used to generate riveting hole size records;

[0243] a thirteenth determination module, configured to determine a riveting force displacement monitoring strategy based on the riveting force displacement tolerance band in the riveting operation content information and in combination with a riveting process quality management database;

[0244] a ninth generating module, configured to perform riveting process quality confirmation according to the riveting force displacement monitoring strategy, obtain a riveting process monitoring result, and generate a riveting force displacement monitoring record if the riveting process monitoring result meets a preset riveting process requirement;

[0245] A fourteenth determination module is configured to determine riveting forming inspection items based on the inspection quality requirements in the riveting operation content information and in combination with a rivet forming quality management database;

[0246] a fourth determination module, configured to confirm the riveting forming quality according to the riveting forming detection items, obtain riveting forming measurement data, and determine whether the riveting forming measurement data is within a preset riveting forming size range; if so, triggering a tenth generation module;

[0247] The tenth generation module is used to generate riveting forming quality records.

[0248] In one embodiment, the riveting product demand management subsystem 11 includes:

[0249] The third acquisition module is used to obtain riveting product project information;

[0250] a second matching module, configured to match, based on the vehicle type information in the riveting product project information, riveting technical requirement information corresponding to the vehicle type information from a product riveting technical requirement database;

[0251] a fifth judging module, configured to judge whether the riveting technical requirement information is complete, and if so, trigger the third matching module;

[0252] a third matching module, configured to match, from a riveting requirement knowledge database, riveting requirement management data corresponding to the riveting technical requirement information based on the riveting technical requirement information; wherein the riveting technical requirement information includes working condition requirement information, riveting structure load-bearing requirement information, riveting technical standard requirement information, and customer requirement information; and the riveting requirement knowledge database includes working condition requirement data, riveting structure load-bearing requirement data, riveting technical standard data, and customer-specific requirement data corresponding to different riveting technical requirement information, respectively;

[0253] An eleventh generating module is used to generate a riveting requirement management list according to the riveting requirement management data.

[0254] In one embodiment, the apparatus further includes a supplier riveting product management subsystem, which may include:

[0255] The fifteenth determination module is used to determine the riveting capability evaluation factors based on the current supplier's capability evaluation application requirements and in combination with the supplier's riveting capability evaluation database;

[0256] The twelfth generating module is configured to evaluate the riveting capability of the current supplier according to the riveting capability evaluation factors, obtain a supplier riveting capability evaluation result, and generate a supplier riveting capability evaluation record if the supplier riveting capability evaluation result is qualified.

[0257] In one embodiment, the device further comprises:

[0258] The riveting full-process management data collection subsystem is used to store the riveting demand management data, the riveting product design data, the riveting process design data, the riveting production resource configuration data and the riveting product quality data in the corresponding database corresponding to the riveting product project information for data collection, and generate a project riveting report corresponding to the riveting product project.

[0259] It should be noted that the riveting manufacturing process management system provided in the embodiment of the present invention has the same beneficial effects as the riveting manufacturing process management method in the above-mentioned embodiment, and for the specific introduction of the riveting manufacturing process management method involved in the embodiment of the present invention, please refer to the above-mentioned embodiment, and this application will not go into details here.

[0260] The process management system for riveting manufacturing mentioned above is described from the perspective of functional modules. Furthermore, the present invention also provides an electronic device, which is described from the perspective of hardware. An electronic device provided in an embodiment of the present application includes:

[0261] memory for storing computer programs;

[0262] The processor is configured to implement the steps of the riveting manufacturing process management method of the above embodiment when executing the computer program.

[0263] Based on the above embodiment, an embodiment of the present invention further provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the steps of the process management method for riveting manufacturing as described above are implemented.

[0264] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. Reference can be made to the common and similar parts between the various embodiments. For the devices disclosed in the embodiments, since they correspond to the methods disclosed in the embodiments, the description is relatively simple, and the relevant parts can be referred to the method description.

[0265] It should also be noted that, in this specification, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of additional identical elements in the process, method, article, or apparatus comprising the element.

[0266] The steps of the methods or algorithms described in conjunction with the embodiments disclosed herein may be implemented directly using hardware, a software module executed by a processor, or a combination of the two. The software module may be placed in random access memory (RAM), internal memory, read-only memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, a hard disk, a removable disk, a CD-ROM, or any other form of storage medium known in the art.

[0267] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A process management method for riveting manufacturing, characterized in that: include: Determine riveting demand management data based on riveting product project information; Performing riveting product design on the riveting component design model established based on the riveting demand management data to obtain riveting product design data; Perform riveting process design based on the riveting product design data to obtain riveting process design data; Riveting production resources are configured based on the riveting process design data to obtain riveting production resource configuration data, so as to produce riveted products based on the riveting production resource configuration data.

2. The process management method for riveting manufacturing according to claim 1, characterized in that: The riveting product design data includes at least two of: fastener selection information, riveting technology information, riveting risk assessment information, riveting design drawing information, and a riveted joint risk classification list; The step of performing riveting product design on the riveting component design model established based on the riveting demand management data to obtain riveting product design data includes: Extracting data information of a component riveting design model, where the component riveting design model is established based on the riveting requirement management data; Matching the riveted joint design information based on the data information and the riveted joint design database to obtain a riveted joint design result; determining whether the design of the riveted joint meets the design standard requirements according to the riveted joint design result, and if so, determining the riveted joint design parameters according to the riveted joint design result; determining a riveted fastener type that meets the fastener performance requirements based on the riveted joint design parameters in combination with a riveted fastener selection database, and generating fastener selection content information if the riveted fastener type meets the fastener performance requirements; the riveted fastener selection database stores riveted fastener types corresponding to the riveted joint design parameters; The component riveting design model is updated by using a riveted joint designed based on the riveted joint design parameters and a rivet determined based on the riveted fastener type selection to obtain a new component riveting design model; Performing riveting simulation calculation based on the new component riveting design model to generate riveting technical content information including riveting simulation calculation results; Performing a risk level assessment from a riveted joint risk assessment database based on the riveting simulation calculation results, determining a corresponding risk level result, and generating riveting risk assessment content information for the riveted component based on the risk level result; Determine riveting design drawing information based on the riveting risk assessment information and a riveting product design drawing database, wherein the riveting design drawing information carries dimension information, fastener information, risk level, and installation information of each riveted joint; A riveted joint risk grading list for each riveted joint is generated based on the riveted design drawing information and a riveted joint risk grading database.

3. The process management method for riveting manufacturing according to claim 2, characterized in that: The riveted joint design result includes at least two of the following: joint type, thickness of connected parent materials, number of parent material layers, order of each layer of parent material, and rivet type.

4. The process management method for riveting manufacturing according to claim 2, characterized in that: The riveting process design data includes at least two of: riveting assembly simulation content information, riveting operation content information, riveting joint summary file, riveting process evaluation report and riveting process specification; Then, performing riveting process design based on the riveting product design data to obtain riveting process design data includes: The riveting assembly process is formulated according to the riveting process assembly model established based on the riveting design drawing information and combined with the riveting component assembly simulation database to obtain riveting assembly process formulation data; the riveting assembly process formulation data includes component dimensions and tolerances, positioning and clamping methods, component assembly sequence, and rivet riveting sequence; Acquire an assembly simulation result obtained by performing assembly simulation calculation based on the riveting assembly process data, and generate riveting assembly simulation content information if the assembly simulation result meets the assembly requirements; Determining riveting operation content information based on the riveting assembly simulation content information; Determining riveting process equipment information based on the equipment information in the riveting operation content information and a riveting process equipment database; Determining the riveted fastener information based on the fastener information in the riveting operation content information and a riveted fastener database; Based on the riveted joint design information and the riveted joint risk classification list, riveted joint elements are summarized in combination with a riveted joint summary database to obtain a riveted joint summary file including riveted joint element information; Determining riveting process assessment items and riveting process assessment methods corresponding to each riveting process assessment item based on the riveting design drawing information and the riveted joint risk classification list in combination with the riveting process assessment management database; Determining a riveting process assessment result according to the riveting process assessment method, and generating a riveting process assessment report if the riveting process assessment result is qualified; A riveting process specification corresponding to the riveted joint is generated according to the riveting process assessment report and combined with a riveting process specification management database.

5. The process management method for riveting manufacturing according to claim 4, characterized in that: The riveting production resource configuration data includes: at least two of: a process method configuration list, a riveting process equipment configuration list, a riveting fastener configuration list, a process method validity confirmation record, a process equipment capability confirmation record, and a fastening performance confirmation record; The riveting production resource configuration is performed based on the riveting process design data to obtain riveting production resource configuration data, including: Perform riveting process method configuration according to the riveting process specification in combination with the process configuration management database to determine a process method configuration list; Performing riveting process assessment and verification according to the process method in the process method configuration list to obtain a riveting process assessment and verification result, and generating a process method validity confirmation record if the riveting process assessment and verification result is qualified; According to the equipment requirement information in the riveting operation content information, riveting process equipment is configured in combination with the process equipment management database to generate a riveting process equipment configuration list; Performing riveting test verification on each riveting process equipment in the riveting process assembly configuration list to obtain a riveting process equipment test verification result, and generating a process equipment capability confirmation record if the riveting process equipment test verification result is qualified; Perform riveting fastener configuration according to the riveting process specification combined with the material configuration management database, and generate a riveting fastener configuration list; A fastener performance test is performed on each riveted fastener in the riveted fastener configuration list to obtain a fastener performance test result, and a fastening performance confirmation record is generated if the fastener performance test result is qualified.

6. The process management method for riveting manufacturing according to claim 5, characterized in that: Also includes: A riveted product quality analysis is performed based on the riveting process design data to obtain riveted product quality data.

7. The process management method for riveting manufacturing according to claim 6, characterized in that: The riveted product quality data includes at least two of the following: riveted assembly dimension records, riveted hole dimension records, riveted force displacement records, and riveted forming quality records; The riveting product quality analysis based on the riveting process design data to obtain riveting product quality data includes: Determine assembly inspection points based on assembly dimensions and positioning point information in the riveting operation content information and in combination with a riveted component assembly quality management database; Performing assembly dimension quality confirmation based on the assembly inspection items to obtain assembly dimension measurement data, determining whether the assembly dimension measurement data meets a preset assembly dimension range, and if so, generating a riveting assembly dimension record; Determine the hole making inspection items based on the hole making size and hole making steps in the riveting operation content information and in combination with the riveting hole preparation quality management database; Confirm the hole size quality according to the hole detection item points to obtain hole size measurement data, and determine whether the hole size measurement data meets the preset hole size range. If so, generate a riveting hole size record; Determine a riveting force displacement monitoring strategy based on the riveting force displacement tolerance zone in the riveting operation content information and in combination with a riveting process quality management database; Performing riveting process quality confirmation according to the riveting force displacement monitoring strategy to obtain a riveting process monitoring result, and generating a riveting force displacement monitoring record if the riveting process monitoring result meets the preset riveting process requirements; Determine riveting forming inspection items based on the inspection quality requirements in the riveting operation content information and in combination with the riveting rivet forming quality management database; The riveting forming quality is confirmed according to the riveting forming detection items to obtain riveting forming measurement data, and it is determined whether the riveting forming measurement data is within a preset riveting forming size range. If so, a riveting forming quality record is generated.

8. The process management method for riveting manufacturing according to claim 1, characterized in that: The determining of riveting demand management data according to the riveting product project information includes: Get riveting product project information; According to the vehicle type information in the riveting product project information, matching the riveting technical requirement information corresponding to the vehicle type information from the product riveting technical requirement database; determining whether the riveting technical requirement information is complete; if so, matching riveting requirement management data corresponding to the riveting technical requirement information from a riveting requirement knowledge database based on the riveting technical requirement information; wherein the riveting technical requirement information includes at least two of the following: working condition requirement information, riveting structure load-bearing requirement information, riveting technical standard requirement information, and customer requirement information; and the riveting requirement knowledge database includes at least two of the following: working condition requirement data, riveting structure load-bearing requirement data, riveting technical standard data, and customer-specific requirement data corresponding to different riveting technical requirement information; A riveting requirement management list is generated according to the riveting requirement management data.

9. The process management method for riveting manufacturing according to claim 6, characterized in that: Also includes: The riveting demand management data, the riveting product design data, the riveting process design data, the riveting production resource configuration data and the riveting product quality data are stored in a corresponding database corresponding to the riveting product project information for data collection, and a project riveting report corresponding to the riveting product project is generated.

10. A process management system for riveting manufacturing, characterized in that: include: The riveting product demand management subsystem is used to determine the riveting demand management data based on the riveting product project information; A riveting product design management subsystem, configured to perform riveting product design on a riveting component design model established based on the riveting demand management data to obtain riveting product design data; a riveting process design management subsystem, configured to perform riveting process design based on the riveting product design data to obtain riveting process design data; The riveting production resource configuration management subsystem is used to configure riveting production resources based on the riveting process design data to obtain riveting production resource configuration data so as to produce riveted products based on the riveting production resource configuration data.

11. An electronic device, characterized in that: include: memory for storing computer programs; A processor, configured to implement the steps of the riveting manufacturing process management method according to any one of claims 1 to 9 when executing the computer program.

12. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the process management method for riveting manufacturing according to any one of claims 1 to 9 are implemented.