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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of Co and sintering method on microstructure and mechanical behavior of a high-entropy Al0.6NiFeCrCo alloy prepared by powder metallurgy
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Effects of Co and sintering method on microstructure and mechanical behavior of a high-entropy Al0.6NiFeCrCo alloy prepared by powder metallurgy

机译:钴和烧结方法对粉末冶金高熵Al0.6NiFeCrCo合金组织和力学性能的影响

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摘要

The effect of Co on the microstructure and mechanical behavior of a high-entropy alloy (HEA), Al0.6NiFeCrCo, consolidated via spark plasma sintering (SPS) or hot pressing (HP) from powders, was studied in detail. The microstructure of the mechanically alloyed (MA'ed) Al0.6NiFeCrCo HEA consisted of a primary body-centered cubic (BCC) solid-solution phase (similar to 61 vol.%) and a face-centered cubic (FCC) solid-solution phase (similar to 39 vol.%). In contrast, elimination of Co in the Al0.6NiFeCr HEA led to the formation of a primary BCC solid-solution phase (similar to 85 vol.%) with a small amount of FCC solid-solution phase (similar to 15 vol.%) present. The microstructure of the SPS'ed and HP'ed Al0.6NiFeCrCo HEAs contained mostly an FCC phase (similar to 88 vol.%) and a small amount of BCC phase (similar to 12 vol.%), whereas the SPS'ed and HP'ed Al0.6NiFeCr contained a primary FCC phase (similar to 69 vol.%) with a BCC phase (similar to 31 vol.%) present. Eliminating Co from the Al0.6NiFeCrCo HEA increased the volume fraction of the BCC phase, both in the MA'ed powders and the consolidated bulk materials. When compared to the SPS'ed Al0.6NiFeCrCo alloy, the HP'ed Al0.6NiFeCrCo alloy possessed slightly lower strength and Vickers hardness, but slightly higher plasticity. The influence of sintering method on mechanical behavior is identical for both Al0.6NiFeCr and Al0.6NiFeCrCo HEAs. Moreover, the SPS'ed and HP'ed Al0.6NiFeCr samples exhibited lower strength and Vickers hardness, but slightly higher plasticity, as compared to those of Al0.6NiFeCrCo. The mechanisms responsible for the observed influence of Co on phase composition and mechanical behavior of the Al0.6NiFeCrCo HEA are discussed in detail. (C) 2015 Elsevier B.V. All rights reserved.
机译:详细研究了钴对通过火花等离子体烧结(SPS)或粉末热压(HP)固结的高熵合金(HEA)Al0.6NiFeCrCo的组织和力学行为的影响。机械合金化(MA'ed)的Al0.6NiFeCrCo HEA的微观结构包括一个以主体为中心的立方(BCC)固溶相(约占61%(体积))和一个以面为中心的立方(FCC)固溶体相(约占39%)。相反,在Al0.6NiFeCr HEA中消除Co导致形成了主要的BCC固溶相(约占85%(体积))和少量的FCC固溶相(约占15%(体积))。当下。 SPS'ed和HP'ed Al0.6NiFeCrCo HEA的微观结构主要包含FCC相(约占88%(体积))和少量BCC相(约占12%(vol。%)),而SPS'ed和HP HP'ed Al0.6NiFeCr包含主要的FCC相(约占69%(体积))和BCC相(约占31%(体积))。从MA0.6粉末和固结块状材料中去除Al0.6NiFeCrCo HEA中的Co均会增加BCC相的体积分数。与SPS'ed Al0.6NiFeCrCo合金相比,HP'ed Al0.6NiFeCrCo合金的强度和维氏硬度稍低,但塑性较高。对于Al0.6NiFeCr和Al0.6NiFeCrCo HEA,烧结方法对机械性能的影响是相同的。此外,与Al0.6NiFeCrCo相比,SPS'ed和HP'ed Al0.6NiFeCr样品显示出较低的强度和维氏硬度,但塑性稍高。详细讨论了观察到的Co对Al0.6NiFeCrCo HEA相组成和力学行为的影响的机理。 (C)2015 Elsevier B.V.保留所有权利。

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