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Influence of Inclination of Welding Torch on Weld Bead during Pulsed-GMAW Process

机译:脉冲GMAW工艺中焊炬倾角对焊道的影响

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摘要

This work is about the influence rule of inclination of welding torch on the formation and characteristics of weld bead during the pulsed-gas metal arc welding (GMAW) process based on the robotic operation. The inclination of welding torch was an important operation condition during the pulsed-GMAW process, because it can affect the formation and quality of weld bead, which was the output of the process. In this work, the different inclination modes and values were employed to conduct actual welding experiments, and some influence rules can be obtained according to examine the surface topography and cross section. Then, to obtain further rules, serious measurements for the geometry characteristic parameters were conducted and corresponding curve fitting equations between inclination angles and the bead width, penetration and bead height were obtained, and the largest error of these curve fitting equations was 0.117 mm, whose corresponding mean squared error (MSE) was 0.0103. Corresponding verification experiments validated the effectiveness of the curve fittings and showed the second order polynomials were proper, and the largest errors between measurements and curve fitting equations for inclination angle under backward mode were larger than those under forward mode, and were 0.10 mm and 0.15 mm, respectively, which corresponded to the penetration and were below 10%, therefore the equations can be used to predict the geometry of the weld bead. This work can benefit the process and operation optimization of the pulsed-GMAW process, both in the academic researches and actual industrial production.
机译:这项工作是关于基于机械手操作的脉冲气体金属电弧焊(GMAW)过程中焊炬倾斜度对焊缝形成和特性的影响规律。焊枪的倾斜度是脉冲GMAW工艺中的重要操作条件,因为它会影响焊缝的形成和质量,而焊缝的形成是工艺的结果。在这项工作中,采用了不同的倾斜方式和倾角来进行实际的焊接实验,通过检查表面形貌和横截面可以得出一些影响规则。然后,为了获得进一步的规则,对几何特征参数进行了严格的测量,并获得了倾斜角与胎圈宽度,穿透深度和胎圈高度之间的相应曲线拟合方程,这些曲线拟合方程的最大误差为0.117 mm,其相应的均方误差(MSE)为0.0103。相应的验证实验验证了曲线拟合的有效性,表明二阶多项式是正确的,并且在后向模式下,倾角的测量值和曲线拟合方程之间的最大误差大于向前模式下的,分别为0.10 mm和0.15 mm分别对应于熔深且低于10%,因此这些方程式可用于预测焊缝的几何形状。这项工作可以在学术研究和实际工业生产中都有益于脉冲GMAW工艺的工艺和操作优化。

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