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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Optimization of current parameters during variable polarity GMAW of magnesium alloy
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Optimization of current parameters during variable polarity GMAW of magnesium alloy

机译:镁合金可变极性GMAW期间的电流参数优化

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Magnesium alloy welding suffers from problems such as burn through and loss of alloying elements during conventional welding process due to high heat input. Variable polarity gas metal arc welding (VP-GMAW) features low heat input. Therefore, it is an attractive method for welding of magnesium alloy. However, the principles governing the correlations among welding current parameters, metal transfer modes, and bead formation are not well understood. Identifying optimal welding current parameters by trial and error is unrealistic. Therefore, peak current, base current, and negative current were selected as independent variables. Their impact mechanism on metal transfer and bead formation were investigated by experiments with high-speed photographs. Then, weld quality evaluation was conducted by a fuzzy comprehensive evaluation. A mathematical method was proposed to calculate optimal current parameters for VP-GMAW of magnesium alloy. In addition, a significant sequence of current parameters is obtained. The results indicate that almost defect-free weld joint is produced by the optimal welding current parameters. The significance sequence of current parameters on weld quality is negative current, peak current, and base current.
机译:由于高热量输入,镁合金焊接在常规焊接过程中燃烧诸如燃烧和损失的问题。可变极性气体金属电弧焊接(VP-GMAW)具有低热量输入。因此,它是镁合金焊接的有吸引力的方法。然而,控制焊接电流参数,金属转移模式和珠粒形成相关性的原理并不顺利。通过试验识别最佳焊接电流参数是不现实的。因此,选择峰值电流,基电流和负电流作为独立变量。通过高速照片的实验研究了它们对金属转移和珠子形成的影响机制。然后,通过模糊综合评估进行焊接质量评估。提出了一种数学方法来计算镁合金VP-GMAW的最佳电流参数。另外,获得了大量的电流参数。结果表明,几乎不缺陷的焊接接头由最佳焊接电流参数产生。焊接质量上电流参数的显着性序列是负电流,峰值电流和基极电流。

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