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高压和高温极端环境下的高熵硼化物

High-Entropy Borides under Extreme Environment of Pressures and Temperatures.

作者信息

Iwan Seth, Lin Chia-Min, Perreault Christopher, Chakrabarty Kallol, Chen Cheng-Chien, Vohra Yogesh, Hrubiak Rostislav, Shen Guoyin, Velisavljevic Nenad

机构信息

Department of Physics, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

High Pressure Collaborative Access Team (HPCAT), X-ray Science Division, Argonne National Laboratory, Argonne, IL 60439, USA.

出版信息

Materials (Basel). 2022 Apr 30;15(9):3239. doi: 10.3390/ma15093239.

Abstract

The high-entropy transition metal borides containing a random distribution of five or more constituent metallic elements offer novel opportunities in designing materials that show crystalline phase stability, high strength, and thermal oxidation resistance under extreme conditions. We present a comprehensive theoretical and experimental investigation of prototypical high-entropy boride (HEB) materials such as (Hf, Mo, Nb, Ta, Ti)B and (Hf, Mo, Nb, Ta, Zr)B under extreme environments of pressures and temperatures. The theoretical tools include modeling elastic properties by special quasi-random structures that predict a bulk modulus of 288 GPa and a shear modulus of 215 GPa at ambient conditions. HEB samples were synthesized under high pressures and high temperatures and studied to 9.5 GPa and 2273 K in a large-volume pressure cell. The thermal equation of state measurement yielded a bulk modulus of 276 GPa, in excellent agreement with theory. The measured compressive yield strength by radial X-ray diffraction technique in a diamond anvil cell was 28 GPa at a pressure of 65 GPa, which is a significant fraction of the shear modulus at high pressures. The high compressive strength and phase stability of this material under high pressures and high temperatures make it an ideal candidate for application as a structural material in nuclear and aerospace fields.

摘要

包含五种或更多组成金属元素随机分布的高熵过渡金属硼化物,为设计在极端条件下具有晶相稳定性、高强度和抗热氧化性的材料提供了新的机遇。我们对典型的高熵硼化物(HEB)材料,如(铪、钼、铌、钽、钛)硼和(铪、钼、铌、钽、锆)硼,在压力和温度的极端环境下进行了全面的理论和实验研究。理论工具包括通过特殊准随机结构对弹性性能进行建模,该模型预测在环境条件下的体模量为288吉帕,剪切模量为215吉帕。HEB样品在高温高压下合成,并在大体积压力室中研究至9.5吉帕和2273开尔文。状态方程热测量得出体模量为276吉帕,与理论结果非常吻合。在金刚石对顶砧单元中通过径向X射线衍射技术测得的压缩屈服强度在65吉帕压力下为28吉帕,这在高压下是剪切模量的很大一部分。这种材料在高温高压下的高抗压强度和相稳定性使其成为核领域和航空航天领域结构材料应用的理想候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c756/9101925/0e604ed9a52c/materials-15-03239-g001.jpg

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