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在 20 开尔文下,CrCoNi 基中熵和高熵合金具有优异的断裂韧性。

Exceptional fracture toughness of CrCoNi-based medium- and high-entropy alloys at 20 kelvin.

机构信息

School of Physics, University of Bristol, Bristol BS8 1TL, UK.

Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

出版信息

Science. 2022 Dec 2;378(6623):978-983. doi: 10.1126/science.abp8070. Epub 2022 Dec 1.

Abstract

CrCoNi-based medium- and high-entropy alloys display outstanding damage tolerance, especially at cryogenic temperatures. In this study, we examined the fracture toughness values of the equiatomic CrCoNi and CrMnFeCoNi alloys at 20 kelvin (K). We found exceptionally high crack-initiation fracture toughnesses of 262 and 459 megapascal-meters (MPa·m) for CrMnFeCoNi and CrCoNi, respectively; CrCoNi displayed a crack-growth toughness exceeding 540 MPa·m after 2.25 millimeters of stable cracking. Crack-tip deformation structures at 20 K are quite distinct from those at higher temperatures. They involve nucleation and restricted growth of stacking faults, fine nanotwins, and transformed epsilon martensite, with coherent interfaces that can promote both arrest and transmission of dislocations to generate strength and ductility. We believe that these alloys develop fracture resistance through a progressive synergy of deformation mechanisms, dislocation glide, stacking-fault formation, nanotwinning, and phase transformation, which act in concert to prolong strain hardening that simultaneously elevates strength and ductility, leading to exceptional toughness.

摘要

CrCoNi 基中熵和高熵合金具有出色的损伤容限,特别是在低温下。在这项研究中,我们研究了等原子比的 CrCoNi 和 CrMnFeCoNi 合金在 20 开尔文(K)时的断裂韧性值。我们发现 CrMnFeCoNi 和 CrCoNi 的裂纹起始断裂韧性分别异常高,达到 262 和 459 兆帕米(MPa·m);CrCoNi 在稳定开裂 2.25 毫米后,表现出超过 540 MPa·m 的裂纹扩展韧性。20 K 时的裂纹尖端变形结构与较高温度下的结构明显不同。它们涉及位错滑移、堆垛层错形成、精细纳米孪晶和转变的ε马氏体的形核和受限生长,具有相干界面,可以促进位错的止动和传输,从而产生强度和延展性。我们相信,这些合金通过变形机制、位错滑移、层错形成、纳米孪晶和相变的协同作用来发展抗断裂性,这些机制协同作用以延长应变硬化,同时提高强度和延展性,从而获得优异的韧性。

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