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Effects of Al addition on the microstructure and mechanical property of Al_xCoCrFeNi high-entropy alloys

机译:Al的添加对Al_xCoCrFeNi高熵合金组织和力学性能的影响

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摘要

A five-component Al_xCoCrFeNi high-entropy alloy (HEA) system with finely-divided Al contents (x in molar ratio, x = 0-2.0) was prepared by vacuum arc melting and casting method. The effects of Al addition on the crystal structure, microstructure and mechanical property were investigated using X-ray diffraction (XRD), scanning electron microscopy (SEM), and Vickers hardness tester. The as-cast Al_xCoCrFeNi alloys can possess face-centered cubic (FCC), body-centered cubic (BCC) or mixed crystal structure, depending on the aluminum content The increase of aluminum content results in the formation of BCC structure which is a dominant factor of hardening. All the BCC phases in the as-cast alloys have a nano-scale two-phase structure formed by spinodal decomposition mechanism. The Alo.gCoCrFeNi alloy exhibits a finest spinodal structure consisting of alternating interconnected two-phase microstructure which explains its maximum hardness of Hv 527 among the alloys. The chemical composition analysis of FCC and BCC crystal structures, their lattice constants, overall hardness demonstrate that the formation of a single FCC solid solution should have Al addition <11 at.% and the formation of a single BCC solid solution requires Al addition at least 18.4 at.% in the Al_xCoCrFeNi system.
机译:通过真空电弧熔炼和铸造方法制备了具有细分的Al含量(摩尔比x,x = 0-2.0)的五组分Al_xCoCrFeNi高熵合金(HEA)系统。使用X射线衍射(XRD),扫描电子显微镜(SEM)和维氏硬度测试仪研究了Al添加对晶体结构,微观结构和力学性能的影响。铸态的Al_xCoCrFeNi合金可以具有面心立方(FCC),体心立方(BCC)或混合晶体结构,具体取决于铝含量。铝含量的增加导致形成BCC结构,这是主要因素硬化。铸态合金中的所有BCC相均具有通过旋节线分解机理形成的纳米级两相结构。 Alo.gCoCrFeNi合金显示出由交替互连的两相微结构组成的最精细的旋节线结构,这说明了合金中Hv 527的最大硬度。 FCC和BCC晶体结构的化学成分分析,其晶格常数,总硬度表明,单一FCC固溶体的形成应具有小于11 at。%的Al添加量,而单一BCC固溶体的形成至少应含Al添加量在Al_xCoCrFeNi系统中为18.4 at。%。

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