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Structural characteristics of Cu/Ti bimetal composite produced by accumulative roll-bonding (ARB)

机译:累积辊压结合法制备Cu / Ti双金属复合材料的结构特征

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Cu/Ti nanostructured bimetal composite was produced by accumulative roll-bonding (ARB) technique and the structural characteristics of this composite were studied both experimentally and by finite element analysis. Macrostructure evolution of the composite layers was investigated by optical and scanning electron microscopes. In addition, transmission electron microscopy (TEM) as well as energy-dispersive X-ray spectroscopy (EDX) techniques were utilized for detailed microstructural investigations. Different finite element simulations were designed based on the experimental results. The results were combined with macrostructural observations to gain a better insight into the fragmentation mechanismof the Ti reinforcements. Necking of the Ti layers was observed after 3 cycles of ARB processing which was found to happen at shear bands, after sufficient work-hardening of the constituents. Further processing resulted in fragmentation and distribution of lens shaped Ti constituents. It was found that such a shape evolution makes it more difficult to deform the Ti segments by further straining and consequently, a more localized strain concentration happens within the Cu matrix near these segments. A significant grain refinement was observed by TEM investigation of the highly strained composite. ARB processing of Cu/ Ti bimetal composite resulted in nanostructured Ti reinforcements distributed within an ultrafine-grained Cu matrix. (C) 2016 Elsevier Ltd. All rights reserved.
机译:铜/钛纳米结构双金属复合材料是通过累积辊压结合(ARB)技术生产的,并通过实验和有限元分析研究了该复合材料的结构特性。通过光学和扫描电子显微镜研究了复合层的宏观结构演变。此外,透射电子显微镜(TEM)以及能量色散X射线光谱(EDX)技术也用于详细的微观结构研究。根据实验结果设计了不同的有限元模拟。将结果与宏观结构观察相结合,可以更好地了解Ti增强材料的破碎机理。经过3个循环的ARB处理后,观察到Ti层出现颈缩,发现在充分的成分硬化后,这些剪切带发生在剪切带上。进一步处理导致晶状Ti成分破碎和分布。已经发现,这种形状演变使得通过进一步的应变使Ti片段变形变得更加困难,因此,在这些片段附近的Cu基质内发生了更局部的应变集中。通过TEM研究高应变复合材料观察到明显的晶粒细化。 Cu / Ti双金属复合材料的ARB处理导致纳米结构的Ti增强物分布在超细晶粒的Cu基体内。 (C)2016 Elsevier Ltd.保留所有权利。

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