Tracking and inspection for laser welding

J. Boillot, K. Uota, E. Berthiaume, J. Noruk
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引用次数: 2

Abstract

High precision, high productivity and high quality are the three absolute requirements in today's laser welding production. Automated laser welding places extreme demands on tool position accuracy. Accurate real-time tracking and inspection systems for laser materials processing make use of high-performance laser sensors. The reliability of the monitored signal can be significantly increased by using high resolution, digital CMOS sensors and high speed real-time image processing technologies. This paper presents the latest developments in high-performance optical joint tracking systems and optical inspection systems based on these technologies. Optical joint tracking systems allow for precise control of part fit-up, machine self-alignment, and adaptive process control; optical inspection systems allow for automated in-line verification, insuring laser welds meet quality standards and customer's specification. Geometric features of welds can be precisely measured and compared to allowable tolerances while undesirable attributes like surface porosities and external defects can be accurately detected.
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激光焊接的跟踪和检验
高精度、高生产率和高质量是当今激光焊接生产的三个绝对要求。自动化激光焊接对刀具位置精度提出了极高的要求。激光材料加工的精确实时跟踪和检测系统采用高性能激光传感器。采用高分辨率、数字CMOS传感器和高速实时图像处理技术,可显著提高监测信号的可靠性。本文介绍了高性能光学关节跟踪系统和基于这些技术的光学检测系统的最新进展。光学关节跟踪系统允许精确控制零件装配,机器自对准和自适应过程控制;光学检测系统允许自动在线验证,确保激光焊接符合质量标准和客户规范。可以精确测量焊缝的几何特征,并将其与允许公差进行比较,同时可以准确检测表面孔隙率和外部缺陷等不良属性。
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