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Modelling magnetohydrodynamics to investigate variation of shielding gases on arc characteristics in the GTAW process

机译:对磁流体动力学进行建模,以研究GTAW工艺中保护气体对电弧特性的变化

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摘要

Gas tungsten arc welding requires a gas shield to be present in order to protect the arc area from contamination by atmospheric gases. As a result of each gas having its own unique thermophysical properties, the shielding gas selected can have a major influence on the arc stability, welding speed, weld appearance and geometry, mechanical properties and fume generation. Alternating shielding gases is a relatively new method of discreetly supplying two different shielding gases to the welding region in order to take advantage of the beneficial properties of each gas, as well as the inherent pulsing effects generated. As part of an ongoing process to fully evaluate the effects of this novel supply method, a computational fluid dynamics model has been generated to include the gas dependent thermodynamic and transport properties in order to evaluate the effects that an alternating gas supply has on the arc plasma. Experimental trials have also been conducted to validate the model arc profile predictions.
机译:气体钨极电弧焊需要有一个气体保护罩,以保护电弧区域免受大气气体的污染。由于每种气体具有自己独特的热物理特性,因此选择的保护气体可能会对电弧稳定性,焊接速度,焊缝外观和几何形状,机械性能以及烟雾产生重大影响。交替使用保护气体是一种相对较新的方法,可以将两种不同的保护气体谨慎地供应到焊接区域,以便利用每种气体的有益特性以及所产生的固有脉冲效应。作为全面评估这种新型供气方法效果的持续过程的一部分,已生成了一个计算流体动力学模型,其中包括与气体有关的热力学和传输特性,以便评估交替供气对电弧等离子体的影响。还进行了实验试验以验证模型电弧轮廓的预测。

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