一种双边剪自动对中方法

By using a high-precision industrial camera and deep learning algorithms to identify the outline of the steel plate, combined with electric cylinder control, automatic centering of the double-sided shears is achieved, solving the problems of poor accuracy and low efficiency in existing technologies, and ensuring the accuracy of the steel plate position and the efficiency of centering.

CN116652283BActive Publication Date: 2026-07-17BEIJING SCI&TECH UNIV DESIGN RES YUAN CO

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
BEIJING SCI&TECH UNIV DESIGN RES YUAN CO
Filing Date
2023-05-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies for double-sided shearing suffer from poor precision, low efficiency, inability to accurately control steel plate displacement, poor centering effect, and inaccurate judgment of steel plate edges. Furthermore, traditional magnetic centering devices cannot be applied to stainless steel plates due to relative displacement issues.

Method used

A high-precision industrial camera is used to capture images of the steel plate. The steel plate contour data is identified through deep learning algorithms and compared with the received blade position. The offset of the electric cylinder for centering is automatically calculated. The control system controls the high-precision electric cylinder to achieve centering control of the steel plate, avoiding inaccurate control of the hydraulic cylinder and relative displacement of the magnetic head.

Benefits of technology

It improves centering efficiency and accuracy, solves the problem of inaccurate laser line centering, realizes real-time online adjustment of the steel plate centering process, ensures the accuracy of the steel plate's moving position, and reduces the demand for human resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明提供一种双边剪自动对中方法,属于机器视觉应用技术和中厚板双边剪剪切技术领域;布置摄像机构在双边剪传动组件上方并采集钢板图像,控制系统接收图像数据并根据算法提取钢板边缘坐标信息,通过图像拼接技术还原图像整体轮廓,控制系统自动计算钢板的两侧边缘分别与双边剪刀口在宽度方向的距离值,转换为调整机构需要调整的距离和方向,通过控制系统控制调整机构的电动缸推动钢板在传动组件上面移动,实现钢板对中过程实时在线调整并最终完成对中;本发明对中精度高,控制系统控制电动缸进行钢板对中避免了油缸控制不准确、磁头控制出现的相对位移的问题。
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