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Influence of Welding Parameters on the Weld Pool Dimensions and Shape in a TIG Configuration

机译:TIG配置中焊接参数对焊池尺寸和形状的影响

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The weld pool shape created by the plasma arc interaction on a workpiece depends on many geometrical and physical parameters and on the operating conditions. Theoretical models are developed in such a way as to predict and to characterize the material. However, these models first need to be validated. Experimental results are hence proposed with parametric studies. Nevertheless, the interaction time is often short and the weld pool shape evolution not presented. In this work, the experimental setup and the diagnostic methods characterizing the workpiece are presented. The weld pool shape was evaluated versus time according to several parameters such as the current intensity value, the distance between the two electrodes, the cathode tip angle or the plasma gas nature. The results show that the depth-to-width ratio alone is not enough to compare the impact of the parameters. The analysis points out the great influence of the current intensity on the increase of the width and depth compared to the influence of the value of the cathode tip angle. The rise of the arc length leads to an increase of the power through a higher arc voltage; nevertheless, for distances of three and five millimeters and a characteristic time of the welding process of one second, this parameter has a weak influence on the energy transferred. The use of helium leads to a bigger volume of the weld pool due to an increase of width and depth.
机译:由等离子弧相互作用在工件上产生的焊池形状取决于许多几何和物理参数以及操作条件。理论模型以预测和表征材料的方式开发。但是,首先需要验证这些模型。因此,通过参数研究提出了实验结果。但是,相互作用时间通常很短,并且未显示焊缝形状的演变。在这项工作中,介绍了表征工件特征的实验装置和诊断方法。根据几个参数(例如电流强度值,两个电极之间的距离,阴极尖端角度或等离子气体性质),评估焊池形状随时间的变化。结果表明,仅深宽比不足以比较参数的影响。分析指出,与阴极尖端角的值的影响相比,电流强度对宽度和深度的增加有很大的影响。电弧长度的增加通过更高的电弧电压导致功率的增加;但是,对于三到五毫米的距离以及一秒钟的焊接过程特征时间,该参数对传递的能量影响很小。由于宽度和深度的增加,氦气的使用导致焊池的体积更大。

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