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首页> 外文期刊>Materials Letters >Structure and mechanical properties of an in situ refractory Al_(20)Cr_(10)Nb_(15)Ti_(20)V_(25)Zr_(10) high entropy alloy composite
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Structure and mechanical properties of an in situ refractory Al_(20)Cr_(10)Nb_(15)Ti_(20)V_(25)Zr_(10) high entropy alloy composite

机译:原位耐火Al_(20)Cr_(10)Nb_(15)Ti_(20)V_(25)Zr_(10)高熵合金复合材料的组织和力学性能

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摘要

Structure, deformation behavior, and mechanical properties of a refractory Al20Cr10Nb15Ti20V25Zr10 high entropy alloy are reported. In the as-cast state, the alloy had a composite-like hypoeutectic microstructure comprised of a softer primary B2 phase and a harder eutectic mixture consisting of a C14 Laves and the B2 phases. Annealing at 1200 degrees C retained the composite-like constitution and led to the formation of a small amount of a Zr5Al3-type phase. The annealing also had a positive effect on strength and ductility of the alloy at 22 and 800 degrees C; compatibility of plastic deformation at 800 degrees C can be ascribed to the relative softness of the B2 phase. Reasonable agreement was found between the experimental structures and the results of thermodynamic modeling. (C) 2020 Elsevier B.V. All rights reserved.
机译:报道了一种难熔Al20Cr10Nb15Ti20V25Zr10高熵合金的组织,变形行为和力学性能。在铸态下,合金具有类似复合物的亚共晶微观结构,包括较软的一次B2相和较硬的由C14 Laves相和B2相组成的共晶混合物。在1200℃下退火保持了类复合物的结构并导致少量Zr5Al3型相的形成。退火还对合金在22和800摄氏度下的强度和延展性产生积极影响。在800摄氏度时塑性变形的相容性可以归因于B2相的相对柔软度。在实验结构和热力学建模结果之间找到了合理的一致性。 (C)2020 Elsevier B.V.保留所有权利。

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