一种金属复合轧制分层厚度调控方法

By constructing a dynamic overall stiffness model and an adaptive hybrid optimization strategy, the problem of independent control of the thickness of the base layer and the cladding layer of the composite board was solved, achieving stable control of the thickness uniformity and interface quality of the composite board and improving the level of intelligent production.

CN121624232BActive Publication Date: 2026-07-17TAIYUAN UNIVERSITY OF SCIENCE AND TECHNOLOGY +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
TAIYUAN UNIVERSITY OF SCIENCE AND TECHNOLOGY
Filing Date
2026-02-05
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies cannot achieve independent control of the thickness of the base layer and the cladding layer of composite panels, making it difficult to stably control the thickness uniformity and interface quality of the rolled composite panels.

Method used

A dynamic overall stiffness model is constructed, and the interface coordination stiffness is corrected through an adaptive hybrid optimization strategy and thickness ratio partitioning. A two-stage optimization strategy is adopted to solve the thickness of the base layer and the cladding layer, and the roll gap is adjusted according to the thickness ratio to achieve layer thickness control.

Benefits of technology

This improved the thickness uniformity and interface quality of the composite board, enhanced the accuracy and generalization ability of the model, and enabled intelligent production.

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Abstract

本发明涉及一种金属复合轧制分层厚度调控方法,属于金属复合材料轧制技术领域,包括:S1.获取轧制过程中的目标数据;S2.基于所述目标数据,构建复合轧制过程的动态整体刚度模型;S3.基于厚度比值,对所述动态整体刚度模型中的界面协调刚度进行修正;S4.基于修正参数后的动态整体刚度模型,采用两阶段的自适应混合优化策略,求解基层与覆层的厚度;S5.根据所述基层与覆层的厚度,对辊缝调整量进行修正,实现分区控制。本发明有效解决了复合板内部各层厚度难以协调控制的难题,为高质量复合板的稳定、高效生产提供了可靠技术方案。
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