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非等原子CoAl基高熵金属间化合物的燃烧合成与反应性放电等离子烧结

Combustion Synthesis and Reactive Spark Plasma Sintering of Non-Equiatomic CoAl-Based High Entropy Intermetallics.

作者信息

Kuskov Kirill Vasilevich, Nepapushev Andrey A, Aydinyan Sofiya, Shaysultanov Dmitry G, Stepanov Nikita D, Nazaretyan Khachik, Kharatyan Suren, Zakharova Elena V, Belov Dmitry S, Moskovskikh Dmitry O

机构信息

Center of Functional Nano-Ceramics, National University of Science and Technology MISiS, 119049 Moscow, Russia.

Department of Mechanical and Industrial Engineering, Tallinn University of Technology, 19086 Tallinn, Estonia.

出版信息

Materials (Basel). 2023 Feb 10;16(4):1490. doi: 10.3390/ma16041490.

Abstract

The present work reports the direct production of a high-entropy (HE) intermetallic CoNiFeCrAl material with a B2 structure from mechanically activated elemental powder mixtures. Fast and efficient combustion synthesis (CS), spark plasma sintering (SPS), and reactive SPS (RSPS) methods were used to synthesize the HE powders and bulks. The formation of the main B2 phase along with some amounts of secondary BCC and FCC phases are reported, and L12 intermetallic (CS scheme) and BCC based on Cr (CS + SPS and RSPS schemes at 1000 °C) were observed in all samples. The interaction between the components during heating to 1600 °C of the mechanically activated mixtures and CS powders has been studied. It has been shown that the formation of the CoNiFeCrAl phase occurs at 1370 °C through the formation of intermediate intermetallic phases (AlMe, AlCo, AlNi) and their solid solutions, which coincidences well with thermodynamic calculations and solubility diagrams. Compression tests at room and elevated temperatures showed that the alloy obtained by the RSPS method has enhanced mechanical properties (σ = 2.79 GPa, σ = 1.82 GPa, ε = 11.5% at 400 °C) that surpass many known alloys in this system. High mechanical properties at elevated temperatures are provided by the B2 ordered phase due to the presence of impurity atoms and defects in the lattice.

摘要

本工作报道了通过机械活化元素粉末混合物直接制备具有B2结构的高熵(HE)金属间化合物CoNiFeCrAl材料。采用快速高效的燃烧合成(CS)、放电等离子烧结(SPS)和反应性SPS(RSPS)方法来合成HE粉末和块体。报道了主要B2相以及一些次生体心立方(BCC)相和面心立方(FCC)相的形成情况,并且在所有样品中均观察到了L12金属间化合物(CS方案)以及基于Cr的BCC相(1000℃下的CS + SPS和RSPS方案)。研究了机械活化混合物和CS粉末在加热至1600℃过程中各组分之间的相互作用。结果表明,CoNiFeCrAl相在1370℃通过中间金属间化合物相(AlMe、AlCo、AlNi)及其固溶体的形成而产生,这与热力学计算和溶解度图吻合良好。室温及高温下的压缩试验表明,通过RSPS方法获得的合金具有增强的力学性能(400℃时,σ = 2.79 GPa,σ = 1.82 GPa,ε = 11.5%),超过了该体系中许多已知合金。由于晶格中存在杂质原子和缺陷,B2有序相赋予了合金在高温下的高力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db9a/9966466/922ea8bb59bd/materials-16-01490-g001.jpg

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