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首页> 外文期刊>World Journal of Engineering and Technology >Effect of the Welding Parameters on the Structural and Mechanical Properties of Aluminium and Copper Sheet Joints by Electromagnetic Pulse Welding
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Effect of the Welding Parameters on the Structural and Mechanical Properties of Aluminium and Copper Sheet Joints by Electromagnetic Pulse Welding

机译:焊接参数对电磁脉冲焊接铝铜板接头结构和力学性能的影响

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摘要

Aluminium-copper hybrid parts, as a substitution to copper parts, result in weight and cost reduction, and are relevant in applications related to the electronic, heating and cooling sector. However, aluminium to copper joined by thermal welding processes presents challenges in terms of achieving good joint quality. This is attributed to their dissimilar mechanical and thermal properties which result in large stress gradients during heating. This study investigated joining of aluminium to copper sheets by electromagnetic pulse welding, which is a solid-state process that uses electromagnetic forces for joining of dissimilar materials. Hybrid sheet welds were obtained for all parameters conditions, selected according to a Taguchi L18 design. The structural and mechanical characteristics were examined and related to the welding parameters by means of a Pareto analysis and response graphs. The welded zone started with a wavy interface with interfacial layers and defects and evolved to a flat interface without interfacial layers. The maximum transferable force depended on the minimum specimen thickness and the strength of the hybrid sheet weld. In case of aluminium sheet thickness reduction, the maximum transferable force was linearly correlated with the aluminium sheet thickness. High quality joints were obtained for no aluminium sheet thickness reduction and for a sheet weld strength which was at least as high as that of the base material. The most effective way to increase the transferable force was to lower the initial gap and to increase the free length, which resulted in no aluminium sheet thickness reduction. Alternatively, the use of a rounded spacer decreased the effect of the aluminium sheet thickness on the transferable force. An increase in weld width was achieved for an increase in capacitor charging energy and gap, whereas an increase in weld length was obtained for a decrease in gap. An increase in weld width did not necessarily result in an increase in the transferable force. In the regarded cases, a hybrid sheet with narrow weld width could therefore have higher quality.
机译:铝铜混合零件可替代铜零件,从而减轻了重量并降低了成本,并且与电子,加热和冷却领域的应用相关。然而,通过热焊接工艺连接的铝到铜在实现良好的连接质量方面提出了挑战。这归因于它们不同的机械和热性能,从而导致加热过程中的大应力梯度。这项研究研究了通过电磁脉冲焊接将铝与铜板连接起来的过程,这是一种固态过程,利用电磁力将异种材料连接起来。根据Taguchi L18设计选择了所有参数条件的混合薄板焊缝。通过帕累托分析和响应图检查了结构和机械特性,并将其与焊接参数相关联。焊接区从具有界面层和缺陷的波浪形界面开始,逐渐发展为没有界面层的平坦界面。最大可传递力取决于最小试样厚度和混合薄板焊缝的强度。在铝板厚度减小的情况下,最大传递力与铝板厚度线性相关。获得了高质量的接头,没有铝板的厚度减小,并且板的焊接强度至少与基础材料的强度一样高。增加传递力的最有效方法是减小初始间隙并增加自由长度,这不会导致铝板厚度减小。可替代地,使用圆形间隔物减小了铝片厚度对可传递力的影响。焊接宽度的增加是为了增加电容器的充电能量和间隙,而焊接长度的增加是为了减少间隙。焊接宽度的增加并不一定导致可传递力的增加。在所考虑的情况下,具有窄焊缝宽度的混合板因此可以具有更高的质量。

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