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Sub-Structure and Residual Stress in Rotary Swaged Cu/Al Clad Composite Wires

机译:旋转锻化Cu / Al Clad复合电线的子结构和残余应力

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This study investigated the prospective application of the advantageous intensive plastic deformation method of rotary swaging for production of Al-Cu composite wires. Such materials are perspective to be used within a wide range of commercial and industrial branches, from transportation to electrotechnics. Cu-Al laminated wires with two unique different stacking sequences were rotary swaged down to 5 mm diameter at room temperature to minimize the development of brittle intermetallics at the interfaces. The analyses primarily focused on the mutual comparison of both the stacking sequences (Al sheath reinforced with Cu wires vs. Al sheath and Al core reinforced with Cu inter-layer) from the viewpoints of mechanical properties, sub-structure development, and occurrence of residual stress. While the individual Cu wires exhibited bimodal structure and the presence of residual stress within the growing grains, the Cu inter-layer featured recrystallized grains and homogeneous stress distribution. The mechanical properties for both the composites were enhanced by the swaging technology; the composite reinforced with Cu wires exhibited slightly higher ultimate tensile strength than the one with Cu inter-layer (258 MPa vs. 276 MPa). However, the latter featured significantly higher plasticity.
机译:本研究调查了旋转型旋转型旋转型旋转旋转型材的前瞻性应用。这些材料是在广泛的商业和工业分支中使用的透视,从运输到电工。具有两个独特的不同堆叠序列的Cu-Al层压导线在室温下旋转至5mm直径,以最大限度地减少界面处的脆性金属间化物质的发育。从机械性能,子结构开发和残留的发生的观点来看,分析主要集中在堆叠序列(用Cu鞘与Cu层加固的Al鞘和Al鞘和铝芯加固的互连)的相互比较。压力。虽然各种Cu线表现出双峰结构和生长晶粒内的残余应力的存在,但Cu间层被特征在一起的重结晶晶粒和均匀应力分布。通过锻炼技术提高了两种复合材料的机械性能;用Cu线加强的复合材料表现出比用Cu层(258MPa与276MPa)的最终拉伸强度略高。然而,后者特色明显较高的可塑性。

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