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Modelling of binary alloy (AlMg) anode evaporation in arc welding

机译:弧焊中二元合金阳极蒸发的建模

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摘要

A simple analytical model of binary alloy anode evaporation in gastungsten arc and gasmetal arc welding is proposed. The model comprises the model of evaporation in convective and diffusive regimes, model of anode processes and allows one to calculate basic physical properties of multicomponent arc plasma near the anode surface as functions of the anode surface temperature, anode chemical composition, electron temperature and electric current density at the anode surface. Evaporation of binary AlMg alloys with different magnesium mass fraction into argon plasma is considered on the basis of the proposed model. The dependences of the alloy boiling temperature on the magnesium mass fraction and electron temperature are presented. Several physical parameters, which are important from the technological point of view (magnesium mass flux, heat loss due to evaporation, anode potential drop, anode heat flux), are calculated for a wide range of anode surface temperature and different values of the magnesium mass fraction. In addition, the influence of heat loss due to evaporation on the total heat flux coming to the anode surface is demonstrated.
机译:提出了一种简单的气体钨极电弧焊和气体金属电弧焊二元合金阳极蒸发分析模型。该模型包括对流和扩散状态下的蒸发模型,阳极过程模型,并允许人们根据阳极表面温度,阳极化学成分,电子温度和电流来计算阳极表面附近的多组分电弧等离子体的基本物理性质。阳极表面的密度。在该模型的基础上,考虑了将镁质量分数不同的二元AlMg合金蒸发成氩等离子体。给出了合金沸腾温度对镁质量分数和电子温度的依赖性。对于广泛的阳极表面温度范围和不同的镁质量值,计算了从技术角度来看很重要的几个物理参数(镁质量通量,由于蒸发造成的热损失,阳极电势下降,阳极热通量)。分数。另外,证明了由于蒸发引起的热损失对到达阳极表面的总热通量的影响。

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