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Prediction of the Weld Pool Stability by Material Flow Behavior of the Perforated Weld Pool

机译:多孔熔池的材料流动行为预测熔池稳定性

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摘要

This article presents the application of a computational fluid dynamics (CFD) finite volume method (FVM) model for a thermo-mechanical coupling simulation of the weld pool used in variable polarity plasma arc welding (VPPAW). Based on the mechanism of the additional pressure produced through self-magnetic arc compression and the jet generated from mechanical plasma arc compression, and considering the influence of arc height and keyhole secondary compression on arc pressure, a three-dimensional transient model of variable polarity plasma arc (VPPA) arc pressure was established. The material flow behaviors of the perforated weld pools were studied. The results show that three kinds of flow behavior existed in the perforation weld pools and it is feasible to predict the weld pool stability by the material flow behaviors of the perforated weld pools. The weld pools can exist stably if the material flow in the bottom of the perforated weld pools can form confluences with moderate flow velocities of 0.45 m/s, 0.55 m/s and 0.60 m/s. The weld pools were cut when the material flowed downward and outward with the maximum velocity of 0.70 m/s, 0.80 m/s. When the maximum material flow velocity was 0.40 m/s, the weld pool collapsed downward under the action of larger gravity. The thermo-mechanical coupling model was verified by the comparison of the simulation and experimental results.
机译:本文介绍了计算流体力学(CFD)有限体积方法(FVM)模型在可变极性等离子弧焊(VPPAW)中使用的熔池热机械耦合模拟中的应用。基于自磁电弧压缩产生的附加压力和机械等离子体电弧压缩产生的射流的机理,并考虑电弧高度和锁孔二次压缩对电弧压力的影响,建立了可变极性等离子体的三维瞬态模型。建立电弧(VPPA)电弧压力。研究了多孔焊接熔池的材料流动行为。结果表明,射孔焊池中存在三种流动行为,利用射孔焊池的材料流动行为预测焊池稳定性是可行的。如果有孔焊接池底部的材料流能够以0.45 m / s,0.55 m / s和0.60 m / s的中等流速形成汇合处,则焊接池可以稳定存在。当材料以最大速度0.70 m / s,0.80 m / s向下和向外流动时,切割熔池。当最大材料流速为0.40 m / s时,焊池在更大的重力作用下向下塌陷。通过仿真和实验结果的比较,验证了热力耦合模型。

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