首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effects of shielding gas composition on arc profile and molten pool dynamics in gas metal arc welding of steels
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Effects of shielding gas composition on arc profile and molten pool dynamics in gas metal arc welding of steels

机译:气体保护成分对钢气金属电弧焊电弧曲线和熔池动力学的影响

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摘要

In gas metal arc welding, gases of different compositions are used to produce an arc plasma, which heats and melts the workpiece. They also protect the workpiece from the influence of the air during the welding process. This paper models gas metal arc welding (GMAW) processes using an in-house simulation code. It investigates the effects of the gas composition on the temperature distribution in the arc and on the molten pool dynamics in gas metal arc welding of steels. Pure argon, pure CO2 and different mixtures of argon and CO2 are considered in the study. The model is validated by comparing the calculated weld profiles with physical weld measurements. The numerical calculations reveal that gas composition greatly affects the arc temperature profile, heat transfer to the workpiece, and consequently the weld dimension. As the CO2 content in the shielding gas increases, a more constricted arc plasma with higher energy density is generated as a result of the increased current density in the arc centre and increased Lorentz force. The calculation also shows that the heat transferred from the arc to the workpiece increases with increasing CO2 content, resulting in a wider and deeper weld pool and decreased reinforcement height.
机译:在气体金属电弧焊中,使用不同成分的气体产生电弧等离子体,该等离子体加热并熔化工件。它们还可在焊接过程中保护工件不受空气影响。本文使用内部模拟代码对气体保护金属电弧焊(GMAW)工艺进行建模。它研究了气体成分对钢中气体金属电弧焊中电弧温度分布和熔池动力学的影响。研究中考虑了纯氩气,纯二氧化碳以及氩气和二氧化碳的不同混合物。通过将计算的焊缝轮廓与物理焊缝测量值进行比较来验证模型。数值计算表明,气体成分会极大地影响电弧温度曲线,传给工件的热量,进而影响焊缝尺寸。随着保护气体中CO2含量的增加,由于电弧中心电流密度的增加和洛伦兹力的增加,产生了具有更高能量密度的更狭窄的电弧等离子体。该计算还表明,从电弧传递到工件的热量随着CO2含量的增加而增加,从而导致焊缝池更宽更深,增强高度降低。

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