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Mechanical performance of laser spot-welded joints in Al-Al/Cu solar thermal absorbers

机译:Al-Al / Cu太阳能吸热器中激光点焊接头的机械性能

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摘要

The mechanical performance of laser spot welded joints used in Al-Cu and Al-Al thermal absorber systems has been evaluated under different laser welding and mechanical loading conditions. In the experimental investigation, the effect of laser pulse shape and laser heat input on the spot weld strength has been examined under static and cyclic shear loading. The residual strength of spot welds after initial cyclic loading has also been evaluated. The experimental results are supported by metallographic analysis of welds and fractography of failed spot welds. It is concluded that the static and cyclic shear strength is primarily influenced by the laser heat input, which regulates the size of the generated laser spot weld section and to a lesser extent by the laser pulse shape. The influence of laser heat input parameter on the mechanical performance seems not to be as severe in the case of residual strength. This may be associated with the presence of brittle intermetallic compounds in the bimetallic Al-Cu welds which induce small scale defects during the welding process, thus further affecting mechanical performance leading to a reduction of the load bearing capacity of the spot weld. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经在不同的激光焊接和机械负载条件下评估了Al-Cu和Al-Al吸热器系统中使用的激光点焊接头的机械性能。在实验研究中,研究了在静态和循环剪切载荷下激光脉冲形状和激光热输入对点焊强度的影响。还评估了初始循环载荷后点焊的残余强度。焊缝的金相分析和不合格点焊的分形分析为实验结果提供了支持。结论是,静态和循环剪切强度主要受激光热输入的影响,激光热输入调节产生的激光点焊部分的尺寸,并在较小程度上受激光脉冲形状的影响。在残余强度的情况下,激光热输入参数对机械性能的影响似乎没有那么严重。这可能与双金属Al-Cu焊缝中存在脆性金属间化合物有关,该脆性金属间化合物在焊接过程中引起小规模的缺陷,从而进一步影响机械性能,导致点焊的承载能力降低。 (C)2018 Elsevier Ltd.保留所有权利。

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