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Experimental Study of Effects of Process Parameters in Forge-Welding Bimetallic Materials: AISI 316L Stainless Steel and 6063 Aluminium Alloy

机译:工艺参数对锻造双金属材料AISI 316L不锈钢和6063铝合金的影响的实验研究

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Forge welding is a process that can overcome the limitations of friction welding and diffusion bonding for joining dissimilar metals, while still permitting a large amount of plastic deformation. However, the available information about forge welding of dissimilar metals is rare as most studies have focused on joining similar metals. This paper reports an investigation on effects of process parameters in forge-welding bimetallic materials: AISI 316L stainless steel and 6063 aluminium alloy. Experiments were carried out under variations in process parameters, including forge-welding temperature, amount of deformation and forging speed. The results showed that the forge-welding temperature was the most significant process parameter and that this could highly influence the tensile strength of the joint. The quality joint was produced successfully. It could withstand the tensile strength of 111.3 MPa and this was comparable to the findings of other researchers. The diffusion zone of the joint was examined by the optical micrograph and elemental composition analysis. Intermetallic compounds were found in the diffusion zone, which was critical evidence for the validity of the experiment.
机译:锻造焊接是一种可以克服摩擦焊接和扩散结合各种异种金属的局限性的方法,同时仍然允许大量的塑性变形。但是,有关异种金属锻造焊接的可用信息很少,因为大多数研究都集中在接合类似金属上。本文报告了一种工艺参数对锻造双金属材料AISI 316L不锈钢和6063铝合金的影响的研究。实验是在各种工艺参数的变化下进行的,这些参数包括锻造焊接温度,变形量和锻造速度。结果表明,锻造焊接温度是最重要的工艺参数,这可能会极大地影响接头的拉伸强度。优质接头已成功生产。它可以承受111.3 MPa的拉伸强度,这与其他研究人员的研究结果相当。通过光学显微照片和元素组成分析检查了关节的扩散区。在扩散区发现了金属间化合物,这是实验有效性的关键证据。

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