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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture >Observation of weld pool profiles in short-circuiting gas metal arc welding
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Observation of weld pool profiles in short-circuiting gas metal arc welding

机译:短路气体保护金属电弧焊焊接熔池轮廓的观察

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Short-circuiting gas metal arc welding (GMAW), a main joining process for light-weight steel structures, is a complex, strongly non-linear, dynamic, and multi input/output process. It is essential to implement real-time monitoring and control of this process in order to ensure product quality and service reliability of the welded structures. In this paper, a low-cost and compact vision system is developed to observe the weld pool surface profiles in short-circuiting GMAW under different levels of welding current, welding speed, and contact tube-to-workpiece distance. Appropriate technical means are employed to lower the arc light interference and to synchronize the image grabber with the short-circuiting stage. Clear and complete weld pool surface images are captured by Observation from the Front of the Pool (OFP) and Observation from the Rear of the Pool (ORP), and the weld pool shape and size are determined. The two viewing methods (OFP and ORP) can detect the pool width reliably, but the detected pool length has a larger error. A modification method is proposed. The weld pool images are captured by Observation from the Side Position (OSP), and the tilted slope of the pool surface and the reinforcement height are detected in this way. Through modification, the measurement accuracy of the pool length is improved. This lays a foundation for the process control of short-circuiting GMAW, but further investigation is still required as a next step.
机译:短路气焊金属电弧焊(GMAW)是轻型钢结构的主要连接工艺,它是一个复杂的,强烈非线性的,动态的,多输入/输出的过程。必须执行此过程的实时监视和控制,以确保焊接结构的产品质量和服务可靠性。在本文中,开发了一种低成本,紧凑的视觉系统,以观察在不同水平的焊接电流,焊接速度和接触管到工件距离的情况下,短路GMAW中的熔池表面轮廓。采用适当的技术手段来降低电弧光的干扰,并使图像采集器与短路台同步。通过从熔池正面观察(OFP)和从熔池背面观察(ORP)捕获清晰完整的焊池表面图像,并确定焊池形状和大小。两种查看方法(OFP和ORP)可以可靠地检测池宽度,但是检测到的池长度具有较大的误差。提出了一种修改方法。通过从侧面位置(OSP)观察来捕获焊缝图像,并以此方式检测焊缝表面的倾斜度和钢筋高度。通过修改,提高了池长的测量精度。这为短路GMAW的过程控制奠定了基础,但下一步仍需要进一步研究。

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