Effects of He-Ar shielding gas compositions on arc plasma physical properties in rotating laser + GMAW hybrid fillet welding: Numerical simulation

Yaowei Wang,Wen Liu, Wenda Li, Xiaoyang Su, Wenyong Zhao,Guoxiang Xu,Jie Zhu

Optics & Laser Technology(2024)

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摘要
To understand the influence mechanism of He-Ar shielding gas composition on arc physical properties in laser + GMAW hybrid welding, this study establishes an arc numerical analysis model in rotating laser + GMAW hybrid fillet welding by considering the geometric feature of joint configuration and the physical parameters of He-Ar shielding gas. The effects of He-Ar shielding gas mixtures in different ratios on arc plasma temperature, velocity, and pressure are investigated, respectively. The results show that with the increasing He content in the shielding gas, the overall shape of arc is compressed, the peak temperature decreases, the arc temperature distribution range is more concentrated, which is beneficial to increasing the weld penetration depth. The arc plasma flow velocity increases with the He content increases, but the plasma flow pattern becomes disordered when the He content reaches 50 %, which is not conducive to the stability of arc. The arc pressure value and the high-pressure distribution region near the workpiece surface increase significantly with an increasing He content ratio, due to the contraction effect of high He content mixed shielding gas on the arc.
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关键词
He-Ar shielding gas mixture,Rotating laser-arc hybrid welding,Plasma physical properties,Numerical simulation,Fillet welding
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