NbMoVTa refractory high-entropy alloy incorporated WNi matrix composite as a future plasma-facing material: Evaluation of mechanical properties and helium ion irradiation behavior

IF 4.8 2区 材料科学 Q2 CHEMISTRY, PHYSICAL Intermetallics Pub Date : 2024-12-31 DOI:10.1016/j.intermet.2024.108621
Burçak Boztemur , Kaan Filiz , Zahide Karagüney , Eyüpcan Gökaydın , Yasin Bozkurt , Ceren Özbasmacı , Kübra Gürcan Bayrak , Yue Xu , Laima Luo , Duygu Ağaoğulları , M. Lütfi Öveçoğlu
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Abstract

Refractory high-entropy alloys (RHEAs) have gained attention in the last decades with their high mechanical strength, self-healing mechanism, and high irradiation resistance. These materials are evaluated to have a high potential as plasma-facing materials for fusion reactors. In this study, helium ion irradiation and mechanical behaviors of the RHEA-reinforced WNi matrix composites were investigated based on this perspective. Equimolar molybdenum, niobium, tantalum and vanadium powders were mechanically alloyed for 6 h to produce NbMoVTa RHEA with a single BCC phase. Then, different amounts (10, 20, 30, and 40 wt%) of RHEA were added into the W1Ni (containing 99 wt% W and 1 wt% Ni) matrix by planetary ball milling for 72 h. Consolidation was conducted by spark plasma sintering technique (1410 °C, 1 min). X-ray diffraction, scanning electron microscopy coupled with energy dispersion spectroscopy, and Archimedes' density analyses were performed on the composites. Moreover, wear and hardness properties of the composites were examined, and the lowest specific wear rate (0.59 mm3/N.m × 10−5) and the highest hardness value (10.10 GPa) were found for the W1Ni-40RHEA composite. Helium irradiation was exposed to the composites to observe their irradiation resistance. It was observed that the lowest increment and the least deformation were obtained with the SPS'ed W1Ni-40RHEA composite. With the analysis of He+ irradiation, it was determined that the effect of radiation on mechanical properties is irrelevant. Also, it was observed that the addition of RHEA into the W matrix can create a high potential for using plasma-facing material. Moreover, it decreased the problems of tungsten against He+ irradiation.

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NbMoVTa耐火高熵合金加入WNi基复合材料作为未来等离子体表面材料:力学性能和氦离子辐照行为评价
难熔高熵合金(RHEAs)以其高机械强度、自愈机制和高耐辐照性而受到广泛关注。这些材料被评价为具有作为聚变反应堆等离子体表面材料的高潜力。本研究从这一角度研究了氦离子辐照和rhea增强WNi基复合材料的力学行为。等摩尔钼、铌、钽和钒粉末机械合金化6小时,制得具有单一BCC相的NbMoVTa RHEA。然后,通过行星球磨将不同量(10、20、30和40 wt%)的RHEA加入到W1Ni(含99 wt% W和1 wt% Ni)基体中72 h。通过火花等离子烧结技术(1410°C, 1 min)进行凝固。对复合材料进行了x射线衍射、扫描电子显微镜-能量色散光谱和阿基米德密度分析。同时,对复合材料的耐磨性和硬度进行了测试,其中比磨损率最低(0.59 mm3/N)。W1Ni-40RHEA复合材料的硬度值最高,为10.10 GPa。对复合材料进行氦辐照,观察其抗辐照性能。结果表明,SPS'ed W1Ni-40RHEA复合材料的变形量和增量最小。通过对He+辐照的分析,确定辐照对材料力学性能的影响无关紧要。此外,研究人员还观察到,在W基体中加入RHEA可以为等离子体表面材料的使用创造很高的潜力。此外,它还减少了钨抗He+辐照的问题。
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来源期刊
Intermetallics
Intermetallics 工程技术-材料科学:综合
CiteScore
7.80
自引率
9.10%
发文量
291
审稿时长
37 days
期刊介绍: This journal is a platform for publishing innovative research and overviews for advancing our understanding of the structure, property, and functionality of complex metallic alloys, including intermetallics, metallic glasses, and high entropy alloys. The journal reports the science and engineering of metallic materials in the following aspects: Theories and experiments which address the relationship between property and structure in all length scales. Physical modeling and numerical simulations which provide a comprehensive understanding of experimental observations. Stimulated methodologies to characterize the structure and chemistry of materials that correlate the properties. Technological applications resulting from the understanding of property-structure relationship in materials. Novel and cutting-edge results warranting rapid communication. The journal also publishes special issues on selected topics and overviews by invitation only.
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