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Seam-tracking for high precision laser welding applications-Methods, restrictions and enhanced concepts

机译:高精度激光焊接应用中的焊缝跟踪方法,限制和增强概念

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摘要

Laser beam welding bears evident advantages regarding precision, quality, productivity, low heat input, and feasibility of automation. At the same time the process calls for high precision of the beam positioning on the workpiece, which therefore imposes high requirements of welding trajectory and feed rate accuracy; e.g., for butt welding the focal point of the laser beam with respect to the joint must be maintained within a typical accuracy better than 20- 150 μm, depending on the focused beam radius. To meet these requirements, seam-tracking devices are used. A sensor measures the joint position and computes a correction vector to compensate the joint trajectory offset. The deviation is compensated either by a robot trajectory adjustment or by an additional tracking axis. This paper describes the basic concepts of seam tracking in detail and points out problems in the different control principles, which are evoked by the forerun of the sensor. State-of-the-art sensors and error compensating techniques are presented and analyzed. Further, a new approach for seam tracking is introduced. It uses a multisensor concept, which in addition to the seam position measures the relative displacement between the processing head and the workpiece. An integrated two-dimensional beam positioning system enables "self-guided" processing, which allows high-accuracy tracking of a joint independent of the motion system and disengages from time intensive sensor calibration and robot teaching necessity.
机译:激光束焊接在精度,质量,生产率,低热量输入和自动化的可行性方面具有明显的优势。同时,该工艺要求在工件上进行光束定位的高精度,因此对焊接轨迹和进给速度精度提出了很高的要求。例如,对接焊接时,取决于聚焦光束的半径,必须将激光束相对于接头的焦点保持在优于20-150μm的典型精度内。为了满足这些要求,使用了接缝跟踪设备。传感器测量关节位置并计算校正向量以补偿关节轨迹偏移。通过机器人轨迹调整或通过附加的跟踪轴可以补偿偏差。本文详细描述了接缝跟踪的基本概念,并指出了由传感器的先驱引起的不同控制原理中的问题。介绍并分析了最新的传感器和误差补偿技术。此外,引入了用于接缝跟踪的新方法。它采用了多传感器概念,除了接缝位置外,它还可以测量加工头和工件之间的相对位移。集成的二维电子束定位系统可以实现“自导”处理,从而可以独立于运动系统进行高精度的关节跟踪,并且无需进行耗时的传感器校准和机器人教学。

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  • 来源
    《Journal oflaser Applications》 |2009年第4期|p.183-195|共13页
  • 作者单位

    Fraunhofer Center for Laser Technology, Plymouth, Michigan 48170;

    Fraunhofer Institute for Laser Technology, D-52074 Aachen, Germany;

    Fraunhofer Institute for Laser Technology, D-52074 Aachen, Germany;

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  • 正文语种 eng
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