A kind of multi-layer material synchronous precision cutting tool of roll-to-roll FPC die cutting

By introducing a layered energy-controlled laser and a high-precision vision alignment component synchronous cutting fixture into the roll-to-roll FPC die-cutting process, the problems of delamination and tensile deformation of multi-layer materials during the cutting process are solved, the cutting accuracy and equipment life are improved, and the high-voltage insulation performance and peel strength of FPC products are ensured.

CN122400848APending Publication Date: 2026-07-17MFS TECH HUNAN
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
MFS TECH HUNAN
Filing Date
2026-06-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the existing roll-to-roll FPC die-cutting process, multi-layer composite structures are prone to delamination during punching, resulting in decreased peel strength. Furthermore, there are issues such as material tensile deformation and burr residue, which affect high-voltage insulation performance.

Method used

A multi-layer material synchronous precision cutting fixture for roll-to-roll FPC die cutting is adopted, including fixture frame components, adjustment seat components and laser cutter components. It utilizes a layered energy-controlled laser and a high-precision vision alignment component to achieve synchronous cutting of multi-layer materials. Combined with a cooling control valve tube for temperature control and cooling, it avoids material misalignment and delamination, thereby improving cutting accuracy and equipment life.

Benefits of technology

It enables simultaneous cutting of multi-layer materials, avoiding material delamination and tensile deformation, improving cutting accuracy and equipment lifespan, ensuring the insulation performance and peel strength of FPC products, and improving processing quality and efficiency.

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Abstract

本发明公开了一种卷对卷FPC模切的多层材料同步精密切割工装,涉及卷对卷FPC模切技术领域,包括工装架构件、调节座构件和激光切割器构件,所述工装架构件的前侧表面等距排列滑动安装有调节座构件,所述激光切割器构件安装于调节座构件远离工装架构件的一侧。该卷对卷FPC模切的多层材料同步精密切割工装,通过激光切割器构件的设置,能够在卷对卷的FPC模切过程中,对多层材料实现同步切割,无需分步对位调整,有效提升了切割精度与加工效率,而工装架构件、调节座构件之间可快速调整相邻激光切割器构件之间的间距,适配不同规格尺寸的多层FPC材料加工需求,调整操作简便,不会在切割作业过程中发生位置偏移,保障了切割作业的稳定性。
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