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Engineering heterogeneous microstructure by severe warm-rolling for enhancing strength-ductility synergy in eutectic high entropy alloys

机译:通过严格的热轧工程处理异质组织以增强共晶高熵合金的强度-延展性协同作用

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The microstructure and mechanical properties of a (L1(2) + B2) AlCoCrFeNi2.1 eutectic high entropy alloy (EHEA) processed by severe warm-rolling were investigated in the present work. The EHEA was successfully warm-rolled up to 90% reduction in thickness at 400 degrees C, 600 degrees C and 750 degrees C. Considerable differences in the microstructural evolution were identified during warm-rolling at the three temperatures. The L1(2) phase in the EHEA was disordered due to severe warm-rolling at 400 degrees C and 750 degrees C, while a predominantly ordered structure was retained in the EHEA warm-rolled at 600 degrees C. This anomalous behavior could be adequately explained by the sluggish ordering kinetics at lower deformation temperatures. The EHEA warm-rolled at 750 degrees C showed an extremely heterogeneous microstructure featured by retained lamellar regions comprising of B2 and FCC lamellae with dispersed B2 phase inside the FCC, whereas the non-lamellar regions showed a mixture of ultrafine to nano crystalline disordered FCC, ordered B2 and Cr-rich a phases. The non-lamellar regions were scarce and nearly absent in the EHEA 90% warm-rolled at 600 degrees C and 400 degrees C, respectively. The remarkably heterogeneous microstructure of EHEA warm-rolled at 750 degrees C resulted in outstanding strength-ductility combination with tensile strength similar to 1635 MPa and elongation to failure similar to 18%. The results indicated tremendous potential for achieving superior mechanical properties in heterogeneous EHEAs processed by severe warm-rolling.
机译:在本工作中研究了(L1(2)+ B2)AlCoCrFeNi2.1低共熔高熵合金(EHEA)的组织和力学性能。 EHEA已成功地在400摄氏度,600摄氏度和750摄氏度下热轧,厚度降低了90%。在三个温度下的热轧过程中,发现了微观组织演变的显着差异。 EHEA的L1(2)相由于在400摄氏度和750摄氏度的剧烈热轧而紊乱,而在600摄氏度热轧的EHEA中保留了主要有序的结构。这种异常行为可能是足够的较低的变形温度下缓慢的有序动力学解释了这一点。在750摄氏度下热轧的EHEA显示出极其异质的微观结构,其特征是在FCC内部保留了由B2和FCC薄片组成的保留层状区域,其中B2相分散,而非层状区域则显示了超细至纳米晶体无序FCC的混合物,有序的B2和富铬a相。在EHEA中,分别在600摄氏度和400摄氏度热轧的90%热轧薄钢板中,非薄片区域稀少且几乎不存在。在750摄氏度下热轧的EHEA的组织明显异质,具有出色的强度-延展性,抗拉强度接近1635 MPa,断裂伸长率接近18%。结果表明,通过严格的热轧加工获得的异质EHEA具有优异的机械性能的巨大潜力。

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