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Modeling of the Transport Phenomena in Metal Transfer and Weld Formation of GMAW under the Shielding of Ar-He Mixtures

机译:ar-He混合物屏蔽下GmaW金属转移和焊接成形传输现象的模拟

摘要

A better understanding of the transport mechanism in the metal during a welding process is important for the improvements in the quality and productivity of welding. This project studied the influences of shielding gas compositions on the transport phenomena in the metal domain during gas metal arc welding (GMAW), which include the transient processes of electrode melting; the droplet formation, detachment, transfer and impingement onto the workpiece; and the weld pool dynamics and bead formation. The present study shows that electromagnetic force, which is affected by shielding gas compositions, plays the most significant role in determining the behaviors of metal transfer. For the same welding power input, the increase of He content in the mixture leads to the formation of larger droplets and the decrease of droplet detachment frequency. The predicted phenomena on metal transfer are consistent with the reported experimental observations.
机译:更好地了解焊接过程中金属中的传输机制对于提高焊接质量和生产率很重要。该项目研究了保护气体成分对气体保护电弧焊(GMAW)过程中金属域中迁移现象的影响,其中包括电极熔化的瞬态过程。液滴的形成,分离,转移和撞击到工件上;以及焊缝动力学和焊道形成。本研究表明,受保护气体成分影响的电磁力在确定金属转移行为中起着最重要的作用。对于相同的焊接功率输入,混合物中He含量的增加会导致形成较大的熔滴,并降低熔滴分离的频率。预测的金属转移现象与报道的实验观察结果一致。

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