Process parameter management method and system

By visualizing process parameters using bubble charts, the problems of low efficiency and compatibility errors in traditional process parameter management are solved, enabling efficient and intelligent process parameter management and optimization.

CN120997332APending Publication Date: 2025-11-21DALIAN HANYU SCI & TECH CO LTD
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Patent Information

Application Number
CN202510938683.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Traditional process parameter management methods lack visualization features, resulting in low design efficiency, delayed dynamic feedback, weak version management, easy to cause compatibility errors, and parameter combinations rely on manual verification.

Method used

The system visualizes process parameters using bubble charts, allowing for parameter adjustments and fine-tuning through the bubble chart interface. The system automatically checks compatibility and generates real-time linked process parameter charts and modification logs, supporting intelligent process optimization.

Benefits of technology

It improves the efficiency and accuracy of process parameter management, reduces errors and repetitive operations, supports rapid parameter adjustment and optimization, and meets ISO9001 quality traceability requirements.

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Abstract

The invention relates to the technical field of process parameter management, in particular to a process parameter management method and system, and the method comprises the following steps: A, building a process parameter bubble; bubble icons are placed on the visual interface, process parameter sets are set, the bubble icons and the process parameter sets are bound, and the corresponding process parameter sets can be checked or edited by selecting the bubble icons; b, combining the plurality of established process parameter bubbles to form a process parameter bubble group; c, generating a real-time linkage process parameter diagram: automatically generating the process parameter diagram according to the process parameter bubble group, and automatically performing corresponding updating on the process parameter diagram and automatically storing a historical version and a modification log; according to the process parameter management method, complex process parameters are visualized in a bubble graph mode, checking, modification and management are easy, rapid parameter adjustment and fine adjustment are supported, the combination process of the process parameters of multiple devices is simplified, and intelligent process optimization is achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of process parameter management, and in particular to a process parameter management method and system. BACKGROUND

[0002] The manufacturing of a device usually involves a complex process flow, and each process flow requires precise parameter control such as size, tolerance, surface treatment, etc. The traditional process parameter management method lacks visualization features and is often stored in the form of documents or tables, and the logical relationship between parameters is difficult to intuitively display, resulting in low design efficiency. With the continuous changes in device design and process requirements, the dynamic feedback of the existing method is relatively lagging, and the version management is also weak, which cannot efficiently and intuitively modify and optimize parameters, and the combination of multiple parameters relies on manual checking, which is prone to compatibility errors. SUMMARY

[0003] The present application aims to solve the problems existing in the prior art and provides a process parameter management method, which visualizes complex process parameters through a bubble chart, making it easy to view, modify and manage, avoiding the cumbersome traditional document management method, supporting rapid parameter adjustment and fine-tuning: users can directly adjust and fine-tune parameters through the bubble chart interface, view the modified results in real time, reducing errors and repetitive operations; simplifying the combination process of multiple device process parameters: through the bubble chart method, multiple device process parameters can be efficiently combined and optimized, and the system automatically checks compatibility to avoid errors and conflicts during manual combination; intelligent process optimization: the system can intelligently recommend optimized process parameters based on design requirements and historical data, helping engineers determine a better process solution at the early design stage, and the intelligent log system automatically generates a parameter optimization trajectory chart, which can export a process change evidence chain with a digital signature, meeting the ISO9001 quality traceability requirements.

[0004] To achieve the above purpose, the technical solution adopted by the present application is: a process parameter management method, comprising the following steps:

[0005] A, establishing a process parameter bubble; including:

[0006] The visual interface places a bubble icon, sets a process parameter set, binds the bubble icon with the process parameter set, and selects the bubble icon to view or edit the corresponding process parameter set;

[0007] B, combining the established process parameter bubbles to form a process parameter bubble group;

[0008] C. Real-time linkage process parameter diagram is generated: according to the process parameter bubble group, a process parameter diagram is automatically generated, and the process parameter diagram is used to show the content and mutual relationship of each process parameter set corresponding to each process parameter bubble; when the content of the process parameter set in the process parameter bubble is modified, the process parameter diagram is automatically updated and the historical version and the modification log are automatically saved.

[0009] Further improvement of the above scheme is that each time the process parameter set content of the process parameter bubble is modified, the process parameter set content of each version is recorded and a plurality of process parameter versions are generated, and each process parameter version can be compared and rolled back.

[0010] Further improvement of the above scheme is that each time the process parameter set content of the process parameter bubble is modified, a modification log is generated, the modification log includes one or more information of modification time, modifier, modification content, and is bound with the bubble version.

[0011] Further improvement of the above scheme is that each process parameter set is respectively associated with a unique identifier, and the identifier is dynamically bound with the bubble attribute.

[0012] Further improvement of the above scheme is that each process parameter set is respectively independently stored and distinguished from other devices or process requirements.

[0013] Further improvement of the above scheme is that the process parameter set includes one or more parameters of size parameter, tolerance parameter, material type, surface treatment, and functional requirement.

[0014] Further improvement of the above scheme is that the bubble icon includes a bubble identifier, and the bubble identifier is a number and / or a letter and / or a word.

[0015] Further improvement of the above scheme is that the bubble icon further includes a bubble pattern, and the bubble pattern includes shape and / or color and / or size classification.

[0016] In the step A of establishing the process parameter bubble, the bubble pattern with corresponding shape and / or color and / or size is selected according to the type of process and is placed.

[0017] Further improvement of the above scheme is that the generated process parameter diagram is exported and integrated.

[0018] The application also provides a process parameter management system, including a processor and a memory, the memory stores a program module, the program module is run on the processor, and a process parameter management method is realized according to any one of the above schemes.

[0019] The application has the beneficial effects that the process parameter management method provided by the application comprises the following steps:

[0020] A, establishing a process parameter bubble; comprising:

[0021] The visual interface places a bubble icon, sets a process parameter set, binds the bubble icon with the process parameter set, and can view or edit the corresponding process parameter set by selecting the bubble icon; graphical visualization is adopted, which is more convenient than traditional document viewing or editing;

[0022] B, combining the established process parameter bubbles to form a process parameter bubble group;

[0023] C, generating a real-time linkage process parameter diagram: automatically generating a process parameter diagram according to the process parameter bubble group, the process parameter diagram is used to display the content and mutual relationship of each process parameter set corresponding to each process parameter bubble, when the content of the process parameter set in a certain process parameter bubble is modified, the process parameter diagram will automatically update and automatically save the historical version and modification log;

[0024] The process parameter management method of the application visualizes complex process parameters through a bubble chart, is easy to view, modify and manage, avoids the complexity of traditional document management, supports rapid parameter adjustment and fine tuning: the user can directly adjust and fine tune the parameters through the bubble chart interface, view the modified effect in real time, reduces errors and repeated operations; simplifies the combination process of multiple device process parameters: through the bubble chart mode, the process parameters of multiple devices can be efficiently combined and optimized, the system automatically checks the compatibility, avoids errors and conflicts during manual combination; intelligent process optimization: the system can intelligently recommend optimized process parameters according to design requirements and historical data, help engineers determine a better process scheme at the early stage of design, the intelligent log system automatically generates a parameter optimization trajectory diagram, can export a process change evidence chain with a digital signature, and meets the ISO9001 quality traceability requirements. DETAILED DESCRIPTION

[0025] The process parameter management method of the application comprises the following steps:

[0026] A, establishing a process parameter bubble; comprising:

[0027] The visual interface places a bubble icon, sets a process parameter set, binds the bubble icon with the process parameter set, and can view or edit the corresponding process parameter set by selecting the bubble icon; graphical visualization is adopted, which is more convenient than traditional document viewing or editing;

[0028] B, combining the established process parameter bubbles to form a process parameter bubble group;

[0029] C. Real-time linkage process parameter diagram is generated: according to the process parameter bubble group, a process parameter diagram is automatically generated, the process parameter diagram is used to show the content and mutual relationship of each process parameter set corresponding to each process parameter bubble, when the content of the process parameter set in the process parameter bubble is modified, the process parameter diagram is automatically updated and the history version and modification log are automatically saved; the corresponding parameter diagram can be automatically generated in real time, the problem of non-real-time of the previous traditional document is solved; the history version and modification log are automatically saved, which is more convenient for version management;

[0030] The process parameter management method of the application visualizes complex process parameters through a bubble chart, which is easy to view, modify and manage, avoids the complexity of traditional document management, supports rapid parameter adjustment and fine tuning, each parameter bubble has a version tree function built-in, records the timestamp, operator and data evolution path of each adjustment, supports one-key backtracking and comparison analysis of any version, users can directly adjust and fine-tune parameters through the bubble chart interface, view the modified effect in real time, reduce errors and repeated operations, simplify the combination process of multiple device process parameters: through the bubble chart method, the process parameters of multiple devices can be efficiently combined and optimized, the system automatically checks compatibility, avoiding errors and conflicts during manual combination, intelligent process optimization: the system can intelligently recommend optimized process parameters according to design requirements and historical data, helping engineers determine a better process scheme at the early stage of design, intelligent recommendation system based on process knowledge graph, combined with historical process data, equipment characteristics and product requirements, 3-5 groups of optimized parameter schemes are recommended through bubble color change, shortening the scheme iteration cycle, the intelligent log system automatically generates a parameter optimization trajectory diagram, which can export a process change evidence chain with a digital signature, meeting the ISO9001 quality traceability requirements.

[0031] Each time the content of the process parameter set of the process parameter bubble is modified, the content of each version of the process parameter set is recorded and multiple process parameter versions are generated, version comparison and rollback of each process parameter version can be performed, comparison between different versions can be performed, which facilitates difference processing and selection by workers, users can view the history version of each process parameter and can roll back to a previous version, this function ensures the traceability of process parameter changes and avoids accidental loss of important design information, the system can provide difference comparison between versions to help users quickly understand the changes between different versions, traceable version management is provided: the system automatically records and manages the process parameters and their history versions modified each time, ensuring that any changes can be traced during production and manufacturing, improving the transparency and controllability of design changes.

[0032] When the content of the process parameter set of the process parameter bubble is modified each time, a modification log is generated, the modification log includes one or more of modification time, modifier, modification content, and is bound to the bubble version; it is more convenient for users to quickly and accurately find, select and better trace the content of each version.

[0033] Each process parameter set is associated with a unique identifier, and the identifier is dynamically bound to the bubble attribute; it is convenient to quickly find and modify each process parameter set, the identifier is dynamically bound to the bubble attribute, the parameter set is quickly positioned in the topology graph, and the annotation is more convenient.

[0034] Each process parameter set is independently stored and distinguished from other devices or process requirements; it can further ensure the uniqueness of the process parameter set, so as to more accurately find and modify each process parameter set, and ensure data uniqueness and security.

[0035] The process parameter set includes one or more of size parameters, tolerance parameters, material types, surface treatments, and functional requirements; size parameters: such as length, width, height, diameter, thickness, etc., tolerance parameters: such as dimensional tolerance, shape tolerance, surface roughness, etc., material types: such as metal, plastic, composite material, etc., surface treatment: such as polishing, coating, electroplating, etc., functional requirements: such as high temperature resistance, electrical conductivity, corrosion resistance, etc.

[0036] The bubble icon includes a bubble identifier, and the bubble identifier is a number and / or a letter and / or a word; in the embodiment, the associated bubbles are distinguished by numbers 1, 2, 3, etc.; of course, in other embodiments, the associated bubbles can also be distinguished by letters A, B, C, etc. or Chinese characters.

[0037] The bubble icon also includes a bubble pattern, and the bubble pattern includes shape and / or color and / or size classification;

[0038] When the process parameter bubble is established in the step A, the corresponding shape and / or color and / or size bubble pattern is selected according to the type of process and placed; the user can classify these parameters by tags, such as "size", "surface treatment", "material", etc. Each type of process parameter can be given different bubble attributes, for example, a red bubble represents precision requirement, a green bubble represents surface treatment requirement, etc. By selecting bubbles of different colors, shapes and sizes according to the type of process parameter, the bubbles can be classified and labeled more easily, quickly positioned and found, and efficiency improved.

[0039] The generated process parameter diagram is exported and integrated to realize seamless transmission of parameter data to the manufacturing end; users can export the final process parameter diagram into various file formats such as PDF, SVG, CAD, etc., and the system can provide an API interface to transmit and integrate the process parameter diagram data into the production management system, facilitating subsequent production, manufacturing and quality control.

[0040] A process parameter management system comprises a processor and a memory, the memory storing program modules, the program modules being executed by the processor to implement a process parameter management method as described above.

[0041] In order to further illustrate the practical application effect of the present application, the following through a specific case to show the application of the present application in the process parameter management of automobile engine cover stamping die.

[0042] Actual application case: process parameter management of automobile engine cover stamping die

[0043] 1. Implementation steps

[0044] (1) First step: Establish process parameter bubbles

[0045] Place the bubble icon in the visualization interface, and set the process parameter set for each key process node (such as blanking, stretching, shaping, etc.) of the automobile engine cover stamping die. For example, set the size parameter and tolerance parameter for the blanking process; set the material type and surface treatment for the stretching process.

[0046] Bind each bubble icon with the corresponding process parameter set, so that the corresponding process parameter set can be conveniently viewed or edited by selecting the bubble icon.

[0047] (2) Second step: Combine process parameter bubbles to form a bubble group

[0048] Combine the established several process parameter bubbles according to the process flow sequence of the automobile engine cover stamping die to form a complete process parameter bubble group.

[0049] The system detects the compatibility between parameters in real time, automatically marks conflicts, and avoids manual combination errors. For example, when the tolerance parameter of a certain blanking process conflicts with the size parameter of the subsequent stretching process, the system will prompt and highlight the conflicting bubble in time.

[0050] (3) Third step: Generate process parameter diagram

[0051] Automatically generate a process parameter diagram according to the process parameter bubble group, which clearly shows the content and mutual relationship of the process parameter set corresponding to each process parameter bubble.

[0052] When the content of the process parameter set in the bubble is modified, the process parameter diagram is automatically updated accordingly, and the historical version and modification log are automatically saved. For example, after modifying the tolerance parameter of the punching process, the process parameter diagram is immediately updated to display the new tolerance range, and records the modification time, modifier, etc.

[0053] 2. Technical effect comparison

[0054]

[0055]

[0056] Of course, the above only describes preferred embodiments of the present application, and equivalent changes or modifications made to the structure, features and principles described in the scope of the present application are included in the scope of the present application.

Claims

1. A method of process parameter management, characterized by, The method comprises the following steps: A. Establishing a process parameter bubble; comprising: The visual interface places a bubble icon, sets a process parameter set, binds the bubble icon with the process parameter set, and selects the bubble icon to view or edit the corresponding process parameter set; B. Combining the established process parameter bubbles to form a process parameter bubble group; C. Generating a real-time linkage process parameter diagram: automatically generating a process parameter diagram according to the process parameter bubble group, the process parameter diagram is used to display the content and mutual relationship of each process parameter set corresponding to each process parameter bubble, when the content of the process parameter set in a certain process parameter bubble is modified, the process parameter diagram will automatically update and automatically save the history version and modification log.

2. The method of claim 1, wherein: Each time the process parameter set content of the process parameter bubble is modified, the process parameter set content of each version is recorded and multiple process parameter versions are generated, and each process parameter version can be compared and rolled back.

3. The method of claim 2, wherein: Each time the process parameter set content of the process parameter bubble is modified, a modification log is generated, the modification log includes one or more information of modification time, modifier, modification content, and is bound with the bubble version.

4. The method of claim 1, wherein: Each process parameter set is associated with a unique identifier, and the identifier is dynamically bound with the bubble attribute.

5. The method of claim 1, wherein: Each process parameter set is independently stored and distinguished from other devices or process requirements.

6. The method of claim 1, wherein: The process parameter set includes one or more parameters of size parameter, tolerance parameter, material type, surface treatment, and functional requirement.

7. The method of claim 1, wherein: The bubble icon includes a bubble identifier, which is a number and / or letter and / or word.

8. The method of claim 7, wherein: The bubble icon also includes a bubble pattern, which includes shape and / or color and / or size classification; In the step A, when the process parameter bubble is established, the corresponding shape and / or color and / or size bubble pattern is selected according to the type of process.

9. The method of claim 1, wherein: The generated process parameter diagram is exported and integrated.

10. A process parameter management system comprising a processor and a memory, the memory storing a program module, characterized by: The program module runs on the processor to realize the process parameter management method of any one of claims 1-9.