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Analysis of Deformation Behaviour and Residual Stress in Rotary Swaged Cu/Al Clad Composite Wires

机译:模锻铜/铝复合丝的变形行为和残余应力分析

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摘要

Both copper and aluminum are widely applicable throughout a variety of industrial and commercial branches, however, joining them in a composite provides the possibility of combining all their advantageous properties in one material. This study investigates uniquely sequenced copper–aluminum clad composite wires, fabricated via rotary swaging technology. The composites were processed at 20 °C and 250 °C to a diameter of 5 mm. Structural observations and the determination of residual stress within both elements of the swaged wires were performed via electron microscopy; the experimental results were correlated with numerical predictions. As shown in the results, both the applied swaging force and temperature affected the plastic flow, which had a direct influence on residual stress and texture development; the Al elements exhibited ideal rolling textures, whereas the Cu elements featured ideal shear texture orientation. The grains within both the Al elements of the 5 mm composite wire were refined down to sub-micron size. Structural restoration also had a positive influence on residual stress.
机译:铜和铝都可广泛应用于各种工业和商业分支,但是,将它们结合成复合材料可以将它们的所有有利特性组合在一种材料中。这项研究调查了通过旋转型锻技术制造的具有独特顺序的铜铝复合丝。将复合材料在20°C和250°C的条件下加工成5 mm的直径。通过电子显微镜进行结构观察和确定型锻金属丝的两个元件内的残余应力。实验结果与数值预测结果相关。结果表明,施加的型锻力和温度都会影响塑性流动,这直接影响残余应力和织构的发展。 Al元素表现出理想的滚动织构,而Cu元素表现出理想的剪切织构取向。将5毫米复合线的两个铝元素中的晶粒细化到亚微米尺寸。结构恢复对残余应力也有积极影响。

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