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Investigation of Texture in ECAP Materials Using Neutron Diffraction

机译:利用中子衍射研究ECAP材料中的织构

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摘要

The use of severe plastic deformation techniques such as equal channel angular pressing, has been shown to refine metal microstructures giving advantageous mechanical properties. Metals and alloys subjected to ECAP procedures can have very high yield strengths while maintaining substantial ductility, a unique and attractive combination. However, the implicitly large deformations (the application of repeated shear strains of ~1 are typical) make prediction o f the resulting mechanical properties difficult. In particular, modeling the polycrystalline texture evolution and microstructural strain response is challenging. In this paper, results are presented from a neutron diffraction study on aluminum, copper, nickel and beryllium processed by ECAP. Specific attention is given to the evolution of the bulk texture after one pass and the effect of the initial texture. The neutrons probed volumes on the order of cubic centimeters and therefore provided texture and strain information averaged over the bulk of the sample. The results are discussed in the context of a visco-plastic self-consistent model.
机译:业已表明,使用严格的塑性变形技术(例如等通道角压制)可以改善金属微结构,从而提供有利的机械性能。经过ECAP程序处理的金属和合金可以具有非常高的屈服强度,同时保持相当大的延展性,这是一种独特而有吸引力的组合。但是,隐含的大变形(典型的是施加〜1的反复剪切应变)使得很难预测由此产生的机械性能。特别地,对多晶织构演变和微结构应变响应进行建模具有挑战性。本文介绍了通过ECAP对铝,铜,镍和铍进行中子衍射研究得出的结果。特别注意一遍后块状纹理的演变以及初始纹理的影响。中子探测的体积约为立方厘米,因此可提供整个样品中平均的织构和应变信息。在粘塑性自洽模型的背景下讨论了结果。

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