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首页> 外文期刊>Science and Technology of Welding & Joining >Predictions of weld formation using gas tungsten arcs for various arc lengths from unified arc-electrode model
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Predictions of weld formation using gas tungsten arcs for various arc lengths from unified arc-electrode model

机译:通过统一电弧电极模型预测使用各种长度的气体钨极电弧的焊缝形成

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摘要

Predictions have been made of weld formation for stationary gas tungsten arc welding by making two-dimensional (2D) calculations of temperature and fluid flow velocity of the arc and the electrodes. The whole region of the arc system is modelled, including the tungsten cathode, the arc plasma and the workpiece anode, and convection within the weld pool. Predicted properties of the weld shape for 150 A arcs in argon and helium, for various arc lengths, are compared with experimental results of cross-sectional area of weld. Although total power to the anode increases with increasing arc length, for argon arcs the heat flux density at the axis of the anode becomes lower, with the result that the cross-sectional area of the weld becomes smaller with increasing arc length. For helium arcs total power to the anode also increases with increasing arc length, but the distribution of heat flux density to the anode is approximately constant, with the result that the cross-sectional area of the weld increases. These predictions are in agreement with experimental results that we have obtained.
机译:通过对电弧和电极的温度和流体流速进行二维(2D)计算,可以预测用于固定式钨极氩弧焊的焊缝形成。对电弧系统的整个区域进行了建模,包括钨阴极,电弧等离子体和工件阳极以及焊池内的对流。将氩弧和氩气中150 A电弧在不同电弧长度下的焊接形状的预测特性与焊缝横截面积的实验结果进行了比较。尽管到阳极的总功率随电弧长度的增加而增加,但对于氩弧,阳极轴线处的热通量密度变低,结果,焊缝的横截面积随电弧长度的增加而变小。对于氦弧,到阳极的总功率也随着电弧长度的增加而增加,但是到阳极的热通量密度的分布大致恒定,结果是焊缝的横截面积增加。这些预测与我们获得的实验结果一致。

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