Suppressed defect production and hardening in refractory high entropy alloys under ion irradiation at early stage: A comparative study between VTaTi, HfNbZrTi, and conventional V-4Cr-4Ti

IF 14.3 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Science & Technology Pub Date : 2025-03-25 DOI:10.1016/j.jmst.2025.01.058
Zhixi Zhu, Shang Chen, Qiuhong Zhang, Lei Li, Yuqing Zhao, Xun Guo, V.V. Uglov, Ke Jin, Yunfei Xue
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Abstract

Refractory high entropy alloys (RHEAs) have drawn much attention for their potential applications in advanced reactors. While improved irradiation resistance to void swelling and helium bubble formation has been frequently reported, experimental investigation regarding their early-stage irradiation damage remains insufficient, which hinders the understanding of the behavior of point defects and small clusters. Here we select two typical RHEAs with desired mechanical properties, VTaTi and HfNbZrTi, as well as a conventional V-4Cr-4Ti alloy, and compare their irradiation-induced defect production and hardening under a low-dose irradiation of 0.1 dpa. Significant hardening is observed in V-4Cr-4Ti due to the pinning of deformation-induced dislocations by the high density of irradiation-induced loops. In contrast, the hardening in VTaTi is much weaker, corresponding well to the greatly reduced defect density. Strikingly, in HfNbZrTi, visible defect clusters are not observed with a Cs-corrected transmission electron microscope in the whole irradiation range, and no hardening effect is detected. Such strong suppression of irradiation damage is attributed to the large lattice distortion based on the ab initio calculations and the local chemical fluctuations based on the atomic-scale elemental mappings, which together hinder the mobility of interstitials. Furthermore, minor irradiation softening is evidenced by cross-sectional nanoindentation tests in HfNbZrTi, which is considered to be related to the evolution of short-range orders and interstitial impurities after irradiation.

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离子辐照对难熔高熵合金早期缺陷产生和硬化的抑制:VTaTi、HfNbZrTi和常规V-4Cr-4Ti的比较研究
难熔高熵合金因其在先进反应堆中的潜在应用而备受关注。虽然人们经常报道提高了对空洞膨胀和氦泡形成的辐照抗性,但对其早期辐照损伤的实验研究仍然不足,这阻碍了对点缺陷和小簇的行为的理解。本文选择了VTaTi和HfNbZrTi这两种具有理想力学性能的典型合金,以及一种传统的V-4Cr-4Ti合金,比较了它们在0.1 dpa低剂量辐照下的辐照缺陷产生和硬化情况。在V-4Cr-4Ti中观察到明显的硬化,这是由于高密度的辐照诱导环钉住了变形引起的位错。相比之下,VTaTi中的硬化要弱得多,这与大大降低的缺陷密度相对应。值得注意的是,在HfNbZrTi中,cs校正透射电镜在整个辐照范围内没有观察到明显的缺陷团簇,也没有检测到硬化效应。这种对辐照损伤的强抑制是由于基于从头计算的大晶格畸变和基于原子尺度元素映射的局部化学波动,它们共同阻碍了间隙的迁移。此外,HfNbZrTi的横截面纳米压痕试验表明,辐照后存在轻微的软化现象,这可能与辐照后短程序和间隙杂质的演化有关。
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来源期刊
Journal of Materials Science & Technology
Journal of Materials Science & Technology 工程技术-材料科学:综合
CiteScore
20.00
自引率
11.00%
发文量
995
审稿时长
13 days
期刊介绍: Journal of Materials Science & Technology strives to promote global collaboration in the field of materials science and technology. It primarily publishes original research papers, invited review articles, letters, research notes, and summaries of scientific achievements. The journal covers a wide range of materials science and technology topics, including metallic materials, inorganic nonmetallic materials, and composite materials.
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