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Microstructure and Mechanical Properties of an Ultrasonic Spot-Welded Aluminum-to-Aluminum Joint: Response to Interlayer Thickness

机译:超声点焊铝-铝接头的组织和力学性能:对层间厚度的响应

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摘要

To enhance the mechanical strength of an ultrasonic spot-welded Al/Al joint, an Al 2219 particle interlayer was placed between the two Al sheets during the ultrasonic spot welding process. The effects of the interlayer thickness on the microstructure and mechanical performances of the joints were systematically investigated. The results showed that, the optimum thickness of the Al 2219 particle interlayer was 10 μm, which was beneficial to enhance the weld interface temperature up to 402 °C. The bonding interface of Al/Al 2219 with a wave-like shape was sound, and no significant diffusion layer occurred. The peak lap shear tensile strength (~84.8 MPa) was obtained, which was 36% higher than that (~67.3 MPa) for the joint without the Al 2219 particle interlayer. The strengthening mechanism is caused by the increase of plastic deformation and contact areas in the weld interface.
机译:为了提高超声点焊Al / Al接头的机械强度,在超声点焊过程中将Al 2219颗粒夹层放置在两个Al板之间。系统地研究了夹层厚度对接头组织和力学性能的影响。结果表明,Al 2219颗粒中间层的最佳厚度为10μm,有利于将焊接界面温度提高到402°C。呈波浪状的Al / Al 2219的结合界面良好,未发生明显的扩散层。获得了峰值搭接剪切拉伸强度(〜84.8 MPa),比没有Al 2219粒子夹层的接头的峰值搭接剪切拉伸强度(〜67.3 MPa)高36%。加强机制是由于塑性变形和焊接界面接触面积的增加所致。

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