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通过机械合金化和放电等离子烧结制备的难熔CrMoNbWV高熵合金:微观结构与性能的演变

Refractory CrMoNbWV High-Entropy Alloy Manufactured by Mechanical Alloying and Spark Plasma Sintering: Evolution of Microstructure and Properties.

作者信息

Razumov Nikolay, Makhmutov Tagir, Kim Artem, Shemyakinsky Boris, Shakhmatov Aleksey, Popovich Vera, Popovich Anatoly

机构信息

Institute of Machinery, Materials, and Transport, Peter the Great St. Petersburg Polytechnic University, 195251 St. Petersburg, Russia.

Department of Materials Science and Engineering, Delft University of Technology, 2628 Delft, The Netherlands.

出版信息

Materials (Basel). 2021 Jan 29;14(3):621. doi: 10.3390/ma14030621.

Abstract

In this study, bulk samples of a CrMoNbWV high-entropy alloy (HEA) were obtained for the first time by spark plasma sintering (SPS) of mechanically alloyed (MA) powders at 1200 °C, 1300 °C, and 1400 °C. Microstructure evolution, phase formation as well as wear and corrosion behavior were investigated. The MA powders' phase composition was found to be represented by body-centered-cubic (BCC) solid solution. The solid solution partially decomposed to Laves phases under the sintering, such as CrNb and (Fe, Cr)Nb, and NbVO-VO oxides mixture. The temperature increase to 1400 °C led to a grain coarsening of the BCC phase and decreased the Laves phase content accompanied by precipitation at the grain boundaries. The sintered samples showed high hardness and compressive strength (2700-2800 MPa) at room temperature. The wear tests demonstrated excellent results in comparison to conventional wear-resistant composites. The obtained samples also exhibited high corrosion resistance under electrochemical tests in HSO solution. The CrMoNbWV HEA has comparable mechanical and corrosive properties with the WNbMoTaV type HEA, but at the same time has a reduced density: CrMoNbWV-10.55 g/cm, WNbMoTaV-12.42 g/cm.

摘要

在本研究中,首次通过在1200℃、1300℃和1400℃下对机械合金化(MA)粉末进行放电等离子烧结(SPS)获得了CrMoNbWV高熵合金(HEA)的块状样品。研究了其微观结构演变、相形成以及磨损和腐蚀行为。发现MA粉末的相组成由体心立方(BCC)固溶体表示。在烧结过程中,固溶体部分分解为Laves相,如CrNb和(Fe,Cr)Nb,以及NbVO-VO氧化物混合物。温度升高到1400℃导致BCC相晶粒粗化,并降低了Laves相含量,同时在晶界处发生析出。烧结样品在室温下表现出高硬度和抗压强度(2700-2800MPa)。与传统耐磨复合材料相比,磨损试验显示出优异的结果。在HSO溶液的电化学测试中,所得样品也表现出高耐腐蚀性。CrMoNbWV高熵合金与WNbMoTaV型高熵合金具有相当的机械和腐蚀性能,但同时密度降低:CrMoNbWV-10.55g/cm³,WNbMoTaV-12.42g/cm³。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efdf/7866258/e2778073ebed/materials-14-00621-g001.jpg

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