Zhou Naixie, Jiang Sicong, Huang Timothy, Qin Mingde, Hu Tao, Luo Jian
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.
Sci Bull (Beijing). 2019 Jun 30;64(12):856-864. doi: 10.1016/j.scib.2019.05.007. Epub 2019 May 13.
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.
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。