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Dynamic evolution of the weld pool reflection during weld penetration development

机译:焊缝熔深发展过程中焊池反射的动态演变

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Weld pool surface is believed to contain sufficient information to determine the weld penetration from which skilled welders are able to control the welding process to desired penetration states. However, it is unclear how human welders extract the weld penetration from the observed weld pool surface. In this paper, a novel method is proposed to determine the weld penetration based on the dynamic change of the weld pool surface. This study observes/measures/analyzes the development of a weld pool from partial to full penetration and correlates such change to the weld penetration. Ideally, similar trends in the weld pool surface should be observed when the weld penetration changes from partial to full penetration despite the amperage used and material welded. Correlating the weld pool surface reflecting grayness and the development of the weld penetration from experiments shows: (1) the weld pool reflection intensity will increase while the weld penetration is increasing; (2) the increasing trends of weld pool reflection intensity will decrease when the full penetration is achieved; (3) the weld pool reflection intensity will increase after the full penetration is achieved. Such trend in the weld pool surface reflection intensity when the weld penetration develops can facilitate future work on automatically detecting and control the weld penetration using the weld pool surface as the feedback.
机译:据信,熔池表面包含足够的信息来确定焊缝熔深,熟练的焊工能够从这些信息将焊接过程控制到所需的熔深状态。但是,尚不清楚人类焊工如何从观察到的焊池表面提取焊缝熔深。本文提出了一种基于焊缝池表面动态变化确定焊缝熔深的新方法。这项研究观察/测量/分析了焊池从部分熔深到完全熔深的发展,并将这种变化与焊缝熔深相关联。理想情况下,当焊接熔深从部分熔透变为完全熔透时,尽管使用了多少安培数和焊接材料,也应观察到熔池表面的相似趋势。通过实验将反映灰色的焊缝表面与焊缝的发展进行关联,可以发现:(1)焊缝反射强度随着焊缝渗透性的增加而增加; (2)完全熔透后,熔池反射强度的增加趋势将减小; (3)完全熔透后,熔池反射强度会增加。当焊接熔深发展时,熔池表面反射强度的这种趋势可以促进以后的工作,以使用焊接熔池表面作为反馈来自动检测和控制焊接熔深。

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