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退火对亚稳粉末冶金CoCrFeNiMo高熵合金微观结构和力学性能的影响

Effects of Annealing on Microstructure and Mechanical Properties of Metastable Powder Metallurgy CoCrFeNiMo High Entropy Alloy.

作者信息

Zhang Cui, Liu Bin, Liu Yong, Fang Qihong, Guo Wenmin, Yang Hu

机构信息

State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China.

College of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082, China.

出版信息

Entropy (Basel). 2019 Apr 30;21(5):448. doi: 10.3390/e21050448.

Abstract

A CoCrFeNiMo high entropy alloy (HEA) was prepared through powder metallurgy (P/M) process. The effects of annealing on microstructural evolution and mechanical properties of P/M HEAs were investigated. The results show that the P/M HEA exhibit a metastable FCC single-phase structure. Subsequently, annealing causes precipitation in the grains and at the grain boundaries simultaneously. As the temperature increases, the size of the precipitates grows, while the content of the precipitates tends to increase gradually first, and then decrease as the annealing temperature goes up to 1000 °C. As the annealing time is prolonged, the size and content of the precipitates gradually increases, eventually reaching a saturated stable value. The mechanical properties of the annealed alloys have a significant correspondence with the precipitation behavior. The larger the volume fraction and the size of the precipitates, the higher the strength and the lower the plasticity of the HEA. The CoCrFeNiMo high entropy alloy, which annealed at 800 °C for 72 h, exhibited the most excellent mechanical properties with the ultimate tensile strength of about 850 MPa and an elongation of about 30%. Nearly all of the annealed HEAs exhibit good strength-ductility combinations due to the significant precipitation enhancement and nanotwinning. The separation of the coarse precipitation phase and the matrix during the deformation process is the main reason for the formation of micropores. Formation of large volume fraction of micropores results in a decrease in the plasticity of the alloy.

摘要

通过粉末冶金(P/M)工艺制备了一种CoCrFeNiMo高熵合金(HEA)。研究了退火对P/M高熵合金微观结构演变和力学性能的影响。结果表明,P/M高熵合金呈现出亚稳的面心立方(FCC)单相结构。随后,退火导致在晶粒内和晶界同时发生析出。随着温度升高,析出相的尺寸增大,而析出相的含量先逐渐增加,然后在退火温度升至1000℃时下降。随着退火时间延长,析出相的尺寸和含量逐渐增加,最终达到饱和稳定值。退火合金的力学性能与析出行为有显著对应关系。析出相的体积分数和尺寸越大,高熵合金的强度越高,塑性越低。在800℃退火72 h的CoCrFeNiMo高熵合金表现出最优异的力学性能,其极限抗拉强度约为850 MPa,伸长率约为30%。由于显著的析出强化和纳米孪晶,几乎所有退火后的高熵合金都表现出良好的强度-塑性组合。变形过程中粗大析出相和基体的分离是形成微孔的主要原因。大量微孔的形成导致合金塑性下降。

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