郭胜锋
Enhanced creep resistance of Ti30Al25Zr25Nb20 high-entropy
2021-7-6 08:42
阅读:1837

Enhanced creep resistance of Ti30Al25Zr25Nb20 high-entropy alloy at room temperature

D.Wanga J.Tanab C.J.Lia X.M.Qinb S.F.Guoc

  • Faculty of Materials Science and Engineering, Kunming University of Science and Technology, 650093 Kunming, China

  • College of Materials Science and Engineering, Chongqing University, 400044 Chongqing, China

  • Faculty of Materials and Energy, Southwest University, 400715 Chongqing, China


Abstract

Several previous studies have shown that the dissolution of Al in a solid solution single phase BCC is high unfavorable in TiZrNb system. In this work, a novel Ti30Al25Zr25Nb20 high-entropy alloy (HEA) with a single body-centered cubic (bcc) structure was developed. The Young's modulus and nano-hardness of this HEA measured by continuous stiffness measurement (CSM) technique were 158.2 ± 5.2 GPa and 8.9 ± 0.2 GPa, respectively. The creep behaviors of this HEA at a constant temperature of 20 °C under different loading rates and peak loads were studied by nano-indentation technique. The result indicated that with the increase of loading rates and peak loads, the creep displacement increased, but the creep strain rate sensitive index first decreased and then increased, and the physical mechanisms are interrupted by introducing dislocation activation volume. The reason might attribute to the hysteresis diffusion effect. Compared with other metallic structural materials, Ti30Al25Zr25Nb20 HEA possesses a relatively high dislocation activation volume and low creep strain rate sensitive index value, indicating a significantly high creep resistance.



https://doi.org/10.1016/j.jallcom.2021.161038



转载本文请联系原作者获取授权,同时请注明本文来自郭胜锋科学网博客。

链接地址:https://m.sciencenet.cn/blog-4773-1294247.html?mobile=1

收藏

分享到:

当前推荐数:0
推荐到博客首页
网友评论0 条评论
确定删除指定的回复吗?
确定删除本博文吗?