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Energy characteristics of droplet transfer in wire-arc additive manufacturing based on the analysis of arc signals

机译:基于电弧信号分析的线弧添加剂制造中液滴传输能量特性

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摘要

The non-pulsed arc and pulsed arc were used in wire-arc additive manufacturing (WAAM) of aluminum alloys. Arc signals about arc current and voltage synchronized with the acoustic emission (AE) detected in manufacturing were used as information source to identify the droplet transfer mode. The calculations of probability density distribution, power spectrum distribution and energy gradient to synchronous time-domain signals were used to investigate the characteristics of metal droplet transfer and energy transfer. As a result, it was found that the characteristics of arc power signals and AE signals in WAAM process have a close relationship with the droplet transfer and arc ignition, and could reflect the variations of energy characteristics. The energy output characteristics of non-pulsed arc and pulsed arc during droplet transfer process are different. The matching of pulsed arc and pulsed droplet transfer mode obtains the best thermal and mechanical transfer characteristics, which is more suitable for the WAAM manufacturing process. No matter whether pulsed arc or non-pulsed arc is adopted, the energy output of arc should not be excessive, otherwise the energy output and the impact effect of arc and droplet transfer may be not conducive to the forming efficiency and quality of WAAM manufacturing. (C) 2018 Published by Elsevier Ltd.
机译:非脉冲弧和脉冲弧用于铝合金的线弧添加剂制造(WAAM)。关于在制造中检测到的声发射(AE)同步的电弧电流和电压的电弧信号用作信息源以识别液滴传输模式。概率密度分布,功率谱分布和能量梯度对同步时间域信号的计算用于研究金属液滴传递和能量转移的特性。结果,发现WaAM工艺中的电弧电力信号和AE信号的特性具有与液滴传输和电弧点火的紧密关系,并且可以反映能量特性的变化。在液滴转移过程中非脉冲弧和脉冲弧的能量输出特性是不同的。脉冲电弧和脉冲液滴传输模式的匹配获得了最佳的热和机械传递特性,更适合于WAAM制造过程。无论采用脉冲电弧或非脉冲弧,弧的能量输出不应过度,否则电弧和液滴传递的能量输出和冲击效果可能不利于WAAM制造的成形效率和质量。 (c)2018由elestvier有限公司出版

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