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首页> 外文期刊>Materials Characterization >Effect of Fe content on microstructure and mechanical properties of Al0.5CoCrFexNiTi0.5 high-entropy alloys
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Effect of Fe content on microstructure and mechanical properties of Al0.5CoCrFexNiTi0.5 high-entropy alloys

机译:Fe含量对Al0.5CoCrFexNiTi0.5高熵合金组织和力学性能的影响

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In this study, Al0.5CoCrFexNiTi0.5 alloys (where the molar ratio (x) is 0.5, 1.0, 1.5, and 2.0) were synthesized to elucidate the effect of their Fe content on their microstructure and mechanical properties. The results show that both Al(0.5)CocrFe(0.5)NiTi(0.5) and Al0.5CoCrFe1.0NiTi0.5 alloys consist of four phases, BCC, FCC, sigma, and ordered BCC phases. The number of phases decreases to three for the Al0.5CoCrFe1.5NiTi0.5 and Al0.5CoCrFe2.0NiTi0.5 alloys, both of which consist of the FCC, BCC, and ordered BCC phases. The hardness of the alloys decreases from HV748 to HV399 with increasing Fe content. This result shows that addition of Fe to the alloy inhibits the formation of the sigma phase while promoting the formation of the FCC phase, and thus indicates that Fe stabilizes the FCC phase. Al0.5CoCrFe0.5NiTi0.5, Al0.5CoCrFe1.0NiTi0.5, and Al0.5CoCrFe1.5NiTi0.5 alloys have a dendritic structure. However, the microstructure of the Al0.5CoCrFe2.0NiTi0.5 alloy changes into a three-phase eutectic structure. The compressive strength (sigma(max)) of the alloys decreases with increasing Fe content. Accordingly, sigma(max) decreases from 2240 to 1736 MPa, and the fracture strain increases from 0.11 to 0.45 as the Fe content increases from 0.5 to 2.0. Both Al0.5CoCrFe1.5NiTi0.5 and Al0.5CoCrFe2.0NiTi0.5 alloys exhibit high strength and high ductility. (C) 2016 Elsevier Inc. All rights reserved.
机译:在这项研究中,合成了Al0.5CoCrFexNiTi0.5合金(摩尔比(x)为0.5、1.0、1.5和2.0),以阐明其铁含量对其显微组织和力学性能的影响。结果表明,Al(0.5)CocrFe(0.5)NiTi(0.5)和Al0.5CoCrFe1.0NiTi0.5合金均由BCC,FCC,σ和有序BCC四个相组成。对于Al0.5CoCrFe1.5NiTi0.5和Al0.5CoCrFe2.0NiTi0.5合金,相数减少到三个,这两个合金均由FCC,BCC和有序BCC相组成。随着Fe含量的增加,合金的硬度从HV748降低到HV399。该结果表明,向合金中添加Fe抑制了σ相的形成,同时促进了FCC相的形成,因此表明Fe使FCC相稳定。 Al0.5CoCrFe0.5NiTi0.5,Al0.5CoCrFe1.0NiTi0.5和Al0.5CoCrFe1.5NiTi0.5合金具有树枝状结构。但是,Al0.5CoCrFe2.0NiTi0.5合金的显微组织变为三相共晶组织。合金的抗压强度(σ(max))随铁含量的增加而降低。因此,随着Fe含量从0.5增加到2.0,sigma(max)从2240 MPa降低到1736 MPa,并且断裂应变从0.11增加到0.45。 Al0.5CoCrFe1.5NiTi0.5和Al0.5CoCrFe2.0NiTi0.5合金均具有高强度和高延展性。 (C)2016 Elsevier Inc.保留所有权利。

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