Grain growth inhibition by sluggish diffusion and Zener pinning in high‐entropy diboride ceramics

晶粒生长 晶界 陶瓷 齐纳钉扎 材料科学 晶界扩散系数 粒度 复合材料 冶金 凝聚态物理 微观结构 磁通钉扎 物理 高温超导 超导电性
作者
Yu‐Yun Cheng,Lin Zhou,Jixuan Liu,Yu‐Feng Tan,Guo‐Jun Zhang
出处
期刊:Journal of the American Ceramic Society [Wiley]
卷期号:106 (8): 4997-5004 被引量:5
标识
DOI:10.1111/jace.19128
摘要

Abstract This work reported the grain growth kinetics of high‐entropy diboride (HEB) and HEB‐SiC ceramics containing 10, 20, and 30 vol% SiC during heat treatment at 1800°C. The coarsening of HEB phase occurred in the four kinds of ceramics during heat treatment, especially in HEB ceramics. The kinetic analysis showed that the grain growth of HEB phase in HEB and HEB‐SiC ceramics is controlled by interface‐controlled kinetics and grain‐boundary pinning, respectively. The growth rate constant of HEB grains is lower than ZrB 2 , which is related to the low grain‐boundary energy and the sluggish diffusion effect in dynamics of high‐entropy materials. The growth rate of matrix phase in HEB‐SiC ceramics is similar to that in ZrB 2 –SiC ceramics, indicating that the pinning effect of the SiC second‐phase played the dominant role in inhibiting the grain growth of the high‐entropy matrix phase and disguised the sluggish diffusion effect. This study reveals that the grain growth inhibition through sluggish diffusion effect in a high‐entropy ceramic system may be magnified by the possible existence of segregated second‐phase particles located at the grain boundaries.
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