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Effect of pulsing parameters on drop transfer dynamics and heat transfer behavior in pulsed gas metal arc welding

机译:脉冲参数对脉冲气体保护金属电弧焊熔滴传递动力学和传热行为的影响

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摘要

The effect of pulsing parameters on the metal and heat transfer behaviors in pulsed gas metal arc welding is investigated by a numerical model based on the solution of the magnetohydrodynamic equations within the framework of phase field method. Five sets of current waveforms using different peak current and duration (i.e. 300 A-2.30 ms, 350 A-1.80 ms, 400 A-1.45 ms, 450 A-1.20 ms and 500 A-1.00 ms) but maintaining an identical average current (i.e. 170 A) are considered and compared. The pulses using higher current but shorter duration result in more elongated shape of the pendent drop, earlier detachment, and significantly higher velocity of the detached drop. Unlike the drop velocity, higher peak current merely leads to a slight increase in the average temperature of the detached drop. The reason for this slight increase is that only the joule heating increases with the peak current, while the sheath heating and arc heating is governed by the average current and keeps almost constant using different pulsing parameters. The simulation results are compared with the high speed photos and exhibit good agreements. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在相场法框架内,基于磁流体动力学方程的求解,通过数值模型研究了脉冲参数对脉冲气体保护金属电弧焊接中金属和传热行为的影响。五组电流波形使用不同的峰值电流和持续时间(即300 A-2.30 ms,350 A-1.80 ms,400 A-1.45 ms,450 A-1.20 ms和500 A-1.00 ms)但保持相同的平均电流(即170 A)被考虑和比较。使用较高电流但持续时间较短的脉冲会导致悬垂液滴的形状更细长,分离更早,并且分离液滴的速度明显更高。与液滴速度不同,较高的峰值电流只会导致分离液滴的平均温度略有增加。这种轻微增加的原因是仅焦耳加热随峰值电流增加,而护套加热和电弧加热由平均电流控制,并且在使用不同的脉冲参数时几乎保持恒定。仿真结果与高速照片进行了比较,并显示出良好的一致性。 (C)2018 Elsevier Ltd.保留所有权利。

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