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Microscopic mechanisms contributing to the synchronous improvement of strength and plasticity (SISP) for TWIP copper alloys

机译:有助于提高TWIP铜合金强度和塑性(SISP)的微观机制

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摘要

In this study, the concept of “twinning induced plasticity (TWIP) alloys” is broadened, and the underlying intrinsic microscopic mechanisms of the general TWIP effect are intensively explored. For the first aspect, “TWIP copper alloys” was proposed following the concept of “TWIP steels”, as they share essentially the same strengthening and toughening mechanisms. For the second aspect, three intrinsic features of twinning: i.e. “dynamic development”, “planarity”, as well as “orientation selectivity” were derived from the detailed exploration of the deformation behavior in TWIP copper alloys. These features can be considered the microscopic essences of the general “TWIP effect”. Moreover, the effective cooperation between deformation twinning and dislocation slipping in TWIP copper alloys leads to a desirable tendency: the synchronous improvement of strength and plasticity (SISP). This breakthrough against the traditional trade-off relationship, achieved by the general “TWIP effect”, may provide useful strategies for designing high-performance engineering materials.
机译:在这项研究中,拓宽了“孪生诱导塑性(TWIP)合金”的概念,并深入探讨了一般TWIP效应的内在微观机理。对于第一个方面,“ TWIP铜合金”是按照“ TWIP钢”的概念提出的,因为它们具有基本相同的强化和增韧机理。第二方面,从对TWIP铜合金变形行为的详细研究中得出了孪生的三个固有特征:即“动态发展”,“平面性”以及“取向选择性”。这些特征可以被认为是一般“ TWIP效应”的微观本质。此外,TWIP铜合金中的变形孪生和位错滑移之间的有效配合导致了一种理想的趋势:强度和塑性(SISP)的同步提高。通过一般的“ TWIP效应”实现的突破传统折衷关系的突破,可以为设计高性能工程材料提供有用的策略。

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