A Full-Element Parametric Model Design Method Based on Excel and Low-Code

By combining Excel and low-code, a full-element parametric design method was developed, which solved the problems of time-consuming adjustment of design elements and insufficient linkage between non-standard and standard parts. It enabled real-time updates and automatic adjustments of design elements, improving design efficiency and accuracy while reducing costs and time.

CN120337316BActive Publication Date: 2026-03-13WUHAN TEXTILE UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

In existing technologies, adjusting design elements is time-consuming and labor-intensive, there is a lack of coordination between the design of non-standard and standard parts, the efficiency of model replication design is low, the content of the bill of materials in the engineering drawings is inaccurate, and the design cost is high and prone to errors.

Method used

We adopt a full-element parametric model design method based on Excel and low-code. By defining parameters and logical relationships in Excel spreadsheets, we use low-code plugins and Autodesk software to automate and intelligently adjust design elements, including parameter linking, conflict detection, and rule writing, to ensure the consistency and accuracy of the design.

Benefits of technology

It enables real-time updates and automatic adjustments of design elements, improving design efficiency and accuracy, reducing human error, enhancing design flexibility and adaptability, and lowering design costs and time.

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Abstract

This invention relates to a full-element parametric model design method based on Excel and low-code. It delves into the potential of low-code rules, not only applying internal rules but also cleverly combining them with external rules to form a complete rule system. To improve design efficiency, this invention innovatively implements the function of batch injecting low-code rules into similar models. This means that designers only need to define rules once and can apply them to multiple similar or identical models, greatly saving time and effort. Simultaneously, the reusability of rules enhances design consistency and reliability. This invention also provides low-code rule editing and management functions, allowing users to customize and modify rules according to actual needs. This function greatly enhances design flexibility and adaptability, enabling designers to quickly adjust rules according to changing requirements, ensuring design accuracy and efficiency.
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Citation Information

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