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首页> 外文期刊>Measurement Science & Technology >Visualizing the influence of process parameters on fusion hole behavior in tungsten inert gas welding of thin plates with reserved gaps
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Visualizing the influence of process parameters on fusion hole behavior in tungsten inert gas welding of thin plates with reserved gaps

机译:用预留间隙可视化晶圆晶体惰性气体焊接融合孔行为的影响

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摘要

In one-side welding with back-formation with a reserved gap, the weld quality largely depends on the stability of the fusion hole. Therefore, the influence of welding process parameters on fusion hole behavior must be analyzed to realize the quality control for this type of welding. In this study, a low-cost dual camera visual sensing system is designed to conduct real-time synchronous monitoring of backside and topside fusion hole behavior and obtain clear images of the backside and topside of a fusion hole. A series of wire-filling tungsten inert gas welding tests with a reserved gap for 3 mm thick 304 stainless-steel test pieces were performed. According to the fusion hole behavior, the welding process was divided into three stages: blind fusion hole stage, fusion hole growth stage and stable fusion hole stage. Moreover, the influence law of the main process parameters (i.e. welding current, welding speed and reserved gap) on fusion hole behavior was explored. The results lay a solid foundation for fusion hole control and optimization in one-side welding with back-formation with a reserved gap.
机译:在具有保留间隙的背部形成的单侧焊接中,焊接质量在很大程度上取决于融合孔的稳定性。因此,必须分析焊接工艺参数对融合孔行为的影响,以实现这种焊接的质量控制。在这项研究中,低成本的双摄像头视觉传感系统旨在进行背面和顶部融合孔行为的实时同步监测,并获得融合孔的后侧和顶部的清晰图像。进行一系列线填充钨惰性气体焊接试验,具有3mm厚的304不锈钢试样的保留间隙。根据融合孔行为,焊接过程分为三个阶段:盲熔孔阶段,融合孔生长阶段和稳定的融合孔阶段。此外,探讨了主要过程参数的影响规律(即焊接电流,焊接速度和保留间隙)进行融合孔行为。结果为融合孔控制和一侧焊接中的优化奠定了坚实的基础,具有保留间隙的背部焊接。

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