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首页> 外文期刊>Advanced Engineering Materials >Microstructural Evolution, Mechanical Properties, and Corrosion Behavior of an Al7.5Co20.5Fe24Ni24Cr24 High‐Entropy Alloy
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Microstructural Evolution, Mechanical Properties, and Corrosion Behavior of an Al7.5Co20.5Fe24Ni24Cr24 High‐Entropy Alloy

机译:Al7.5Co20.5Fe24Ni24Cr24高熵合金的微观组织演化、力学性能及腐蚀行为

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摘要

The relationship among microstructure, mechanical properties, and corrosion behavior of an Al7.5Co20.5Fe24Ni24Cr24 high‐entropy alloy (HEA) is systematically studied. The as‐cast HEA consisted of a single face‐centered cubic (FCC) phase with negligible chemical inhomogeneities of Al and Ni elements, whereas the homogenized HEA displayed a single FCC supersaturated solid‐solution phase with uniform distribution of constituent elements. Homogenization followed by aging at 900 and 700 °C leads to the formation of different precipitates in the FCC matrix. As the variety and volume fraction of precipitates increased, the HEA samples accordingly show enhanced strengths accompanied by slight losses in ductility. However, the formation of L12, B2, and σ precipitates is detrimental to the electrochemical properties of the HEAs. Improving the homogeneity of elemental distribution leads to a higher content of Cr oxides and Co(Fe,Cr)2O4 complex oxides in the passivation film, rendering an enhancement of corrosion resistance of the HEA in sulfuric acid. This work reveals the influence of chemical inhomogeneities and precipitates on the mechanical and electrochemical properties of the FCC‐structured Al7.5Co20.5Fe24Ni24Cr24 HEA via tuning phase composition, providing an interesting insight into how to balance the structural (strength and ductility) and functional (anti‐corrosion) properties of HEAs.
机译:系统研究了Al7.5Co20.5Fe24Ni24Cr24高熵合金(HEA)的组织、力学性能与腐蚀行为之间的关系。铸态高熵合金由单个面心立方(FCC)相组成,Al和Ni元素的化学不均匀性可以忽略不计,而均质化HEA则表现出单一的FCC过饱和固溶相,组成元素分布均匀。均质化,然后在 900 和 700 °C 下老化导致在 FCC 基质中形成不同的沉淀物。随着沉淀物种类和体积分数的增加,高熵合金样品的强度相应增强,延展性略有下降。然而,L12、B2 和 σ 沉淀物的形成不利于 HEA 的电化学性质。提高元素分布的均匀性,使钝化膜中Cr氧化物和Co(Fe,Cr)2O4络合物含量更高,从而增强了HEA在硫酸中的耐蚀性。本工作通过调谐相组成揭示了化学不均匀性和析出物对FCC结构Al7.5Co20.5Fe24Ni24Cr24高熵合金力学和电化学性能的影响,为如何平衡高熵合金的结构(强度和延展性)和功能(抗腐蚀)性能提供了有趣的见解。

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