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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Development of a real-time laser-based machine vision system to monitor and control welding processes
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Development of a real-time laser-based machine vision system to monitor and control welding processes

机译:开发基于激光的实时机器视觉系统,以监视和控制焊接过程

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摘要

In this study, a laser-based machine vision system is developed and implemented to monitor and control welding processes. The system consists of three main modules: a laser-based vision sensor module, an image processing module, and a multi-axis motion control module. The laser-based vision sensor is designed and fabricated based on the principle of laser triangulation. By developing and implementing a new image processing algorithm on the platform of LabVIEW, the image processing module is capable of processing the images captured by the vision sensor, identifying the different types of weld joints, and detecting the feature points. Based on the detected feature points, the position information and geometrical features of the weld joint such as its depth, width, plates mismatch, and cross-sectional area can be obtained and monitored in real time. Meanwhile, by feeding these data into the multi-axis motion control module, a non-contact seam tracking is achieved by adaptively adjusting the position of the welding torch with respect to the depth and width variations of the weld joint. A 3D profile of the weld joint is also obtained in real time for the purposes of in-process weld joint monitoring and post-weld quality inspection. The results indicate that the developed laser-based machine vision system can be well suited for the measurement of weld joint geometrical features, seam tracking, and 3D profiling.
机译:在这项研究中,开发并实施了基于激光的机器视觉系统,以监视和控制焊接过程。该系统由三个主要模块组成:基于激光的视觉传感器模块,图像处理模块和多轴运动控制模块。基于激光三角测量的原理设计和制造了基于激光的视觉传感器。通过在LabVIEW平台上开发和实施新的图像处理算法,图像处理模块能够处理视觉传感器捕获的图像,识别不同类型的焊接接头并检测特征点。基于检测到的特征点,可以实时获取并监视焊接接头的位置信息和几何特征,例如其深度,宽度,板不匹配和横截面积。同时,通过将这些数据输入到多轴运动控制模块中,通过相对于焊接接头的深度和宽度变化自适应地调整焊枪的位置,可以实现非接触式焊缝跟踪。还可以实时获取焊接接头的3D轮廓,以进行过程中的焊接接头监控和焊后质量检查。结果表明,开发的基于激光的机器视觉系统非常适合于测量焊接接头的几何特征,焊缝跟踪和3D轮廓分析。

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