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Study on the thermo-effect of P-GMAW characterized by structure-borne acoustic emission signals detected in welding on aluminum alloy

机译:以铝合金焊接中检测到的结构声发射信号为特征的P-GMAW的热效应研究

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摘要

According to the structure-borne acoustic emission (AE) signals detected in pulsed gas metal arc welding (P-GMAW), the effects of welding heat input and pulses to the microstructures and the characteristics of AE signals were analyzed. The experiment results showed that the welding arc was the source of most vibration energy in GMAW. The increase of welding heat input caused the growth of grain in weld and the increase of average AE count. The mean grain size was increased with the average AE count increasing, which was attributable to the welding heat input. Both the welding arc and the pulses used in welding were the source of vibration energy in P-GMAW. The mean grain size decreased with the average AE count increasing, which was attributable to the pulses provide additional vibration energy to refine the grain structure. The welding heat input effect played a more important role than the pulses effect to the grain structure in P-GMAW. (C) 2016 Elsevier Ltd. All rights reserved.
机译:根据脉冲气体保护金属电弧焊(P-GMAW)中检测到的固体声发射(AE)信号,分析了焊接热输入和脉冲对微结构的影响以及AE信号的特性。实验结果表明,电弧焊是GMAW中振动能量最大的来源。焊接热量输入的增加导致焊缝中晶粒的增长和平均AE数量的增加。平均晶粒尺寸随着平均AE数量的增加而增加,这归因于焊接热量的输入。焊接电弧和焊接中使用的脉冲都是P-GMAW中振动能量的来源。平均晶粒尺寸随着平均AE计数的增加而减小,这归因于脉冲提供了额外的振动能量以细化晶粒结构。在P-GMAW中,焊接热输入效应比脉冲效应起着更重要的作用。 (C)2016 Elsevier Ltd.保留所有权利。

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