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单相高熵金属间化合物(HEICs):连接高熵合金与陶瓷的桥梁

Single-phase high-entropy intermetallic compounds (HEICs): bridging high-entropy alloys and ceramics.

作者信息

Zhou Naixie, Jiang Sicong, Huang Timothy, Qin Mingde, Hu Tao, Luo Jian

机构信息

Department of Nanoengineering, Program of Materials Science and Engineering, University of California, San Diego, CA 92093-0448, USA; Oerlikon Metco Inc., San Diego, CA 92121, USA.

Department of Nanoengineering, Program of Materials Science and Engineering, University of California, San Diego, CA 92093-0448, USA.

出版信息

Sci Bull (Beijing). 2019 Jun 30;64(12):856-864. doi: 10.1016/j.scib.2019.05.007. Epub 2019 May 13.

Abstract

High-entropy intermetallic compounds (HEICs) were fabricated by mechanical alloying and spark plasma sintering to fill a knowledge gap between the traditional high-entropy alloys (HEAs) and emerging high-entropy ceramics (HECs). Notably, several four- or five-component equimolar aluminides, such as the B2-phase (FeCoNiMnCu)Al, have been made into single-phase HEICs for the first time. Thermodynamic modeling and a reversible, temperature-dependent, phase-stability experiment suggest that such B2-phase HEICs are entropy-stabilized phases. The structure of these HEICs resembles that of HECs with high-entropy mixing of four or five elements of nearly equal fractions in one and only one sublattice, but with significant (∼10%) anti-site defects (differing from typical HECs). A new phase stability rule for forming single B2-phase HEICs is proposed. Five additional HEICs of predominantly D0 phases have also been made. This study broadens the families of equimolar, single-phase, high-entropy materials that have been successfully fabricated.

摘要

通过机械合金化和放电等离子烧结制备了高熵金属间化合物(HEICs),以填补传统高熵合金(HEAs)和新兴高熵陶瓷(HECs)之间的知识空白。值得注意的是,几种四元或五元等摩尔铝化物,如B2相(FeCoNiMnCu)Al,首次被制成单相HEICs。热力学建模和一个可逆的、与温度相关的相稳定性实验表明,此类B2相HEICs是熵稳定相。这些HEICs的结构类似于HECs,在唯一一个亚晶格中,四种或五种几乎等分数的元素进行了高熵混合,但存在显著(约10%)的反位缺陷(不同于典型的HECs)。提出了形成单一B2相HEICs的新相稳定性规则。还制备了另外五种主要为D0相的HEICs。本研究拓宽了已成功制备的等摩尔单相高熵材料的种类。

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