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Welding Pool Oscillation Behaviors for Pulsed GTA Welding Based on Laser Dot Matrix Sensing

机译:基于激光点矩阵传感的脉冲GTA焊接的熔池振荡行为

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Pool oscillation is thought to have a direct relationship with weld joint penetration and appropriate oscillations help refine grains and reduce defect sensitivity. This paper uses a novel laser dot-matrix sensor to observe the pool oscillation three-dimensionally and use the 3D data as an enhanced ability to analyze oscillation behaviors. It was found that there exist three oscillation modes associated with partial, full, and critical penetration during the base time period. From the observed three dimensional dynamic evolution process, the periodical contraction and expansion at its natural frequency as excited by the pulsing current are observed/found. The amplitude of the oscillation is found to gradually decrease as the oscillation process proceeds and the liquid metal solidifies during the base current period. Furthermore, the amplitude is found to increase as the peak current increases. Because of the enhanced ability on three dimensional observation of the oscillation, this study enhanced the understanding on the pool oscillation and experimentally verified certain theoretical derivations about oscillation which have not been experimentally verified previously.
机译:熔池振动被认为与焊缝熔深有直接关系,适当的振动有助于细化晶粒并降低缺陷敏感性。本文使用一种新型的激光点矩阵传感器来三维地观察池的振荡,并将3D数据用作分析振荡行为的增强功能。发现在基准时间段内存在与部分,完全和临界穿透相关的三种振荡模式。从观察到的三维动态演化过程中,可以观察到/发现由脉冲电流激发的自然频率下的周期性收缩和膨胀。发现振荡幅度随着振荡过程的进行而逐渐减小,并且液态金属在基本电流周期期间固化。此外,发现振幅随着峰值电流的增加而增加。由于增强了对振荡的三维观测的能力,本研究增强了对池振荡的理解,并通过实验验证了有关振荡的某些理论推论,而这些理论推导以前没有经过实验验证。

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