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Surface height and geometry parameters for describing shape of weld pool during pulsed GTAW

机译:用于描述脉冲GTAW期间焊接池形状的表面高度和几何参数

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Abstract: Weld penetration and fine formation are the major factors for consideration of weld bead quality. The geometry of weld pool contains abundant information about the weld penetration. The weld pool surface is depressed during full- penetration because of arc impulse, and the weld pool surface may be convex during part-penetration or welding with filler. In this paper, we present the surface height and shape parameters for describing the three dimension of weld pool. During pulsed GTAW process, the weld pool image can be obtained through visual sensing system by the illumination of arc light on weld pool. The inverted image of tungsten tip and arc shape can be seen clearly from the weld pool image. The position of inverted tungsten tip varies with the surface height according to the principle of specula reflection. The point of tungsten tip is located to calculate the surface height. The shape of weld pool has been characterized with size and shape parameters, such as pool width, length and a series of rear angles, etc. A simple nonlinear formula with only four parameters is proposed for describing the pool shape, and the regression results are shown with high accuracy. Based on the surface height and geometry parameters of weld pool, the shape of weld pool can be strictly defined, which lays the foundation for further study on process model and weld penetration control.!12
机译:摘要:焊接渗透和精细形成是考虑焊缝质量的主要因素。焊接池的几何形状包含有关焊接渗透的丰富信息。由于电弧脉冲,焊接池表面在全渗透期间被压下,并且焊接池表面可以在部分穿透或用填料焊接期间被凸。在本文中,我们介绍了描述焊接池三维的表面高度和形状参数。在脉冲GTAW过程中,通过焊接池上的弧光照明可以通过视觉传感系统获得焊接池图像。可以清楚地从焊接池图像看出钨尖端和弧形的倒置图像。倒钨尖端的位置根据PEALULA反射原理而变化。钨尖的点位于计算表面高度。焊接池的形状特征在于尺寸和形状参数,例如池宽度,长度和一系列后角等。提出了一种简单的非线性公式,仅用于描述池形状,以及回归结果以高精度显示。基于焊接池的表面高度和几何参数,可以严格定义焊缝形状,为进一步研究过程模型和焊接穿透控制奠定了基础。!12

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