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A study on similar and dissimilar linear friction welds of 2024 Al alloy and 2124Al/SiC_P composite

机译:2024 Al合金和2124AL / SIC_P复合材料的类似散线性摩擦焊缝研究

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The aim of the present work is to evaluate the possibility of using the Linear Friction Welding (LFW) technique to produce similar and dissimilar joints between a 2024 Al alloy and a 2124Al/25vol.%SiC_P composite. In this solid state joining process the bonding of two flat edged components is achieved through frictional heating induced by their relative reciprocating motion, under an axial compressive force. Microstructural characterization of the welds was carried out by optical and scanning electron microscopy, to investigate the effect of LFW both on the aluminium alloy matrix and the reinforcement particles. The mechanical behaviour of the welded specimens was studied by means of hardness and tensile tests. The mechanisms of failure were investigated by SEM analyses of the fracture surfaces. LFW joints in MMCs resulted substantially defect free, with a uniform particle distribution, while a partial lack of bonding at the corners was observed in the others welds. The hardness decreased by approximately 10% in the welded zone, with some data fluctuations due to the complex microstructural modifications introduced by the LFW process. The joint efficiency, evaluated in respect to the UTS, was 90% for the Al alloy joints and 80% for the MMC joints. A decrease in the elongation to failure was measured in all the LFW specimens, probably related to the orientation of the plastic flow in the TMAZ, where the fracture generally occurred.
机译:本作本作的目的是评估使用线性摩擦焊接(LFW)技术的可能性,以在2024 Al合金和2124A1 / 25Vol之间产生类似和不同的接头。%SIC_P复合材料。在该固态的连接过程中,通过其相对往复运动引起的摩擦加热在轴向压缩力下实现两个平边部件的粘合。通过光学和扫描电子显微镜进行焊缝的微观结构表征,以研究LFW在铝合金基质和增强颗粒上的影响。通过硬度和拉伸试验研究焊接样品的力学行为。通过裂缝表面的SEM分析来研究失败机制。 MMC中的LFW接头导致自由缺陷,颗粒分布均匀,而在其他焊缝中观察到拐角处的部分缺乏粘合。焊接区的硬度降低了大约10%,由于LFW过程引入的复杂微结构修改,一些数据波动。对UTS评估的联合效率为Al合金接头的90%,MMC接头的80%。在所有LFW样本中测量失败伸长率的减小,可能与TMAZ中塑性流的取向有关,其中裂缝通常发生。

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