Photovoltaic rolled glass online laser cross-cutting method and system

By using an online laser integrated horizontal and vertical cutting method, an encoder is used to track the glass position and speed in real time, generate a composite cutting path, and execute integrated cutting control. This solves the problems of low cutting efficiency and unstable edge quality in the production of photovoltaic rolled glass, and achieves efficient and stable cutting results.

CN122400829APending Publication Date: 2026-07-17JIAXING FULAITE INTELLIGENT EQUIPMENT CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIAXING FULAITE INTELLIGENT EQUIPMENT CO LTD
Filing Date
2026-05-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the current production of photovoltaic rolled glass, horizontal and vertical cutting need to be carried out in separate steps, resulting in low cutting efficiency and unstable cutting edge quality. This makes it difficult to adapt to changes in glass conveying speed and position, affecting production flexibility and efficiency.

Method used

The online laser integrated horizontal and vertical cutting method is adopted. The encoder tracks the glass position and speed in real time to generate a composite cutting path, and the central control system executes integrated cutting control, which includes the coordinated cutting of the vertical cutting laser head, the horizontal cutting laser head and the horizontal cutting motion mechanism.

Benefits of technology

Online laser integrated horizontal and vertical cutting of photovoltaic rolled glass has been achieved, which improves cutting efficiency and edge forming quality, and solves the problems of low cutting efficiency and unstable edge quality.

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Abstract

本发明公开了光伏压延玻璃在线激光横纵一体化切割方法、系统,涉及玻璃切割技术领域。方法包括:将经退火处理的压延玻璃原片送入在线输送辊道,通过编码器实时追踪位置与速度,得到输送参数;中央控制系统根据订单尺寸需求,生成包含横切路径与纵切路径的复合切割路径;根据输送参数与复合切割路径,中央控制系统执行一体化切割组件的协同切割控制,其中,一体化切割组件包含纵切激光头、横切激光头与横切运动机构。解决了现有技术中对光伏压延玻璃切割需分步进行横切和纵切,导致切割效率低且切割边缘质量不稳定的技术问题,实现了光伏压延玻璃在线激光横纵一体化切割,从而提高切割效率和边缘成形质量的技术效果。
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