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Pulsed Current Gas Metal Arc Welding Under Different Shielding And Pulse Parameters; Part 2: Behaviour Of Metal Transfer

机译:不同屏蔽和脉冲参数下的脉冲电流气体金属电弧焊;第2部分:金属转移行为

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The behaviour of metal transfer and arc stiffness understood in terms of arc pressure (P_a) of pulsed current gas metal arc welding (P-GMAW) using mild steel filler wire have been studied with respect to change in pulse parameters under different gas shieldings of Ar+2%CO_2 and Ar+18%CO_2. The arc environment revealing the droplet transfer from electrode to weld pool in bead on plate weld deposition has been studied by high speed video graphy. Effect of pulse parameters has been considered by their hypothetically proposed summarized influence defined by a dimensionless factor φ, mean current (/m) and arc voltage. The droplet diameter and velocity of droplet at the time of detachment are found to vary significantly with the variation of φ. At a given φ the experimentally measured behaviour of metal transfer is found well in agreement to their corresponding theoretical estimates. The average droplet diameter transferred per pulse predominantly reduces but, the velocity of metal transfer at the time of detachment enhances with the increase of φ under both the shielding gases. In general a higher values of φ, l_m and arc voltage enhances the P_a depending upon type of gas shielding. The use of Ar+2%CO_2 shielding gas reduces the droplet diameter and enhances the arc pressure than that observed under Ar+18%CO_2 gas shielding.
机译:研究了使用软钢填充焊丝的脉冲电流气体金属电弧焊(P-GMAW)的电弧压力(P_a)下的金属转移和电弧刚度的行为,以研究在不同的氩气保护下脉冲参数的变化+ 2%CO_2和Ar + 18%CO_2。高速视频图形技术已经研究了电弧环境,该环境揭示了液滴在钢板焊缝沉积中从焊条转移到焊缝中的熔池。已经通过假设由无量纲因数φ,平均电流(/ m)和电弧电压定义的汇总影响来考虑脉冲参数的影响。发现分离时的液滴直径和液滴速度随φ的变化而显着变化。在给定的φ下,可以很好地发现金属转移的实验测量行为,这与它们相应的理论估计相符。在两个保护气体下,每个脉冲传输的平均液滴直径主要减小,但分离时的金属传输速度随φ的增加而增强。通常,取决于气体屏蔽的类型,较高的φ,l_m和电弧电压值会提高P_a。与在Ar + 18%CO_2气体保护下观察到的相比,使用Ar + 2%CO_2保护气体可以减小液滴直径并提高电弧压力。

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