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Evolution of defect substructure of metal alloys at microscopic and mesoscopic level under torsion

机译:金属合金在扭转作用下微观和介观水平下缺陷亚结构的演变

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Transmission electron microscopy was used to investigate the reorientation of crystal lattice during the formation of ultrafine-grained (UFG) copper, nickel, and an alloy of Ni-18% Al-8% Cr-1% Zr-0.15% B (at.%) under severe plastic deformation by equal-channel angular (ECA) pressing and twisting at a high quasi-hydrostatic pressure. The crystal lattice was found to transform into a UFG state; it is fragmented at the nano-, micro-, and mesoscale levels. Possible mechanisms for the reorientation of the crystal lattice under deformation at the micro- and mesoscale level are discussed. (C) 2001 Published by Elsevier Science Ltd. [References: 9]
机译:透射电子显微镜用于研究超细晶粒(UFG)铜,镍和Ni-18%Al-8%Cr-1%Zr-0.15%B(at.5%)合金的形成过程中晶格的重新取向。 %)在较高的准静水压力下通过等通道角(ECA)压制和扭曲在严重的塑性变形下。发现该晶格转变为UFG状态。它在纳米,微米和中尺度水平上是碎片化的。讨论了在微观和中尺度水平下变形时晶格重新取向的可能机制。 (C)2001年由Elsevier Science Ltd.发布。[参考:9]

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