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Phase equilibria, mechanical properties and design of quaternary refractory high entropy alloys

机译:四元耐火高熵合金的相平衡,力学性能和设计

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Refractory high entropy alloys (RHEAs) are candidates for replacing conventional refractory alloys. In this work, twelve new RHEAs were selected and produced. The phases present in the as-cast and heat-treated conditions were characterized and compared with CALPHAD simulations and empirical parameters. Here we propose a new interpretation for the two widely used delta and Omega empirical parameters. In this work, they are shown to be inaccurate when applied to a large group of RHEAs, but can be a powerful alloy design tool if applied on specific subsystems of alloys. Experimentally, chromium-containing alloys are shown to form Laves phases, especially when the lattice distortion (delta) is high, while aluminum-containing alloys are shown to form the A15 phase upon heat-treatment, due to their highly negative enthalpy of mixing (Delta H-mix). In addition to microstructural characterization, mechanical properties of these alloys via hardness testing were assessed. A poor correlation was observed between the hardness and the atomic size and elastic modulus mismatch in these single-phase BCC RHEAs, suggesting that core structure of the screw dislocations is a crucial parameter in understanding the strength of these alloys. (C) 2018 Elsevier Ltd. All rights reserved.
机译:耐火高熵合金(RHEA)是替代常规耐火合金的候选材料。在这项工作中,选择并生产了十二个新的RHEA。表征了铸态和热处理条件下的相,并与CALPHAD模拟和经验参数进行了比较。在这里,我们对两个广泛使用的增量和欧米茄经验参数提出了新的解释。在这项工作中,当将它们应用于大量RHEA时显示不准确,但如果将其应用于特定的合金子系统,则可以成为强大的合金设计工具。在实验上,含铬合金会形成Laves相,尤其是在晶格畸变(δ)高的情况下;而含铝合金由于热处理时会产生很大的负混合焓,因此在热处理后会形成A15相( Delta H-mix)。除了微观结构表征外,还通过硬度测试评估了这些合金的机械性能。在这些单相BCC RHEA中,硬度与原子尺寸和弹性模量不匹配之间观察到不良的相关性,这表明螺杆位错的芯结构是理解这些合金强度的关键参数。 (C)2018 Elsevier Ltd.保留所有权利。

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