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激光熔覆制备WTaVTiZr难熔高熵合金的微观结构及高温稳定性研究

Study on Microstructure and High Temperature Stability of WTaVTiZr Refractory High Entropy Alloy Prepared by Laser Cladding.

作者信息

Ding Xiaoyu, Wang Weigui, Zhang Haojie, Tian Xueqin, Luo Laima, Wu Yucheng, Yao Jianhua

机构信息

Institute of Laser Advanced Manufacturing, Zhejiang University of Technology, Hangzhou 310014, China.

College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Entropy (Basel). 2024 Jan 15;26(1):73. doi: 10.3390/e26010073.

Abstract

The extremely harsh environment of the high temperature plasma imposes strict requirements on the construction materials of the first wall in a fusion reactor. In this work, a refractory alloy system, WTaVTiZr, with low activation and high entropy, was theoretically designed based on semi-empirical formula and produced using a laser cladding method. The effects of Zr proportions on the metallographic microstructure, phase composition, and alloy chemistry of a high-entropy alloy cladding layer were investigated using a metallographic microscope, XRD (X-ray diffraction), SEM (scanning electron microscope), and EDS (energy dispersive spectrometer), respectively. The high-entropy alloys have a single-phase BCC structure, and the cladding layers exhibit a typical dendritic microstructure feature. The evolution of microstructure and mechanical properties of the high-entropy alloys, with respect to annealing temperature, was studied to reveal the performance stability of the alloy at a high temperature. The microstructure of the annealed samples at 900 °C for 5-10 h did not show significant changes compared to the as-cast samples, and the microhardness increased to 988.52 HV, which was higher than that of the as-cast samples (725.08 HV). When annealed at 1100 °C for 5 h, the microstructure remained unchanged, and the microhardness increased. However, after annealing for 10 h, black substances appeared in the microstructure, and the microhardness decreased, but it was still higher than the matrix. When annealed at 1200 °C for 5-10 h, the microhardness did not increase significantly compared to the as-cast samples, and after annealing for 10 h, the microhardness was even lower than that of the as-cast samples. The phase of the high entropy alloy did not change significantly after high-temperature annealing, indicating good phase stability at high temperatures. After annealing for 10 h, the microhardness was lower than that of the as-cast samples. The phase of the high entropy alloy remained unchanged after high-temperature annealing, demonstrating good phase stability at high temperatures.

摘要

高温等离子体的极端恶劣环境对聚变反应堆中第一壁的结构材料提出了严格要求。在这项工作中,基于半经验公式从理论上设计了一种具有低活化和高熵特性的难熔合金体系WTaVTiZr,并采用激光熔覆方法制备了该合金。分别使用金相显微镜、XRD(X射线衍射)、SEM(扫描电子显微镜)和EDS(能谱仪)研究了Zr比例对高熵合金熔覆层的金相微观结构、相组成和合金化学成分的影响。高熵合金具有单相体心立方结构,熔覆层呈现典型的树枝状微观结构特征。研究了高熵合金微观结构和力学性能随退火温度的演变,以揭示该合金在高温下的性能稳定性。与铸态样品相比,在900℃下退火5 - 10小时的样品微观结构没有明显变化,显微硬度增加到988.52 HV,高于铸态样品(725.08 HV)。在1100℃下退火5小时,微观结构保持不变,显微硬度增加。然而,退火10小时后,微观结构中出现黑色物质,显微硬度降低,但仍高于基体。在1200℃下退火5 - 10小时,与铸态样品相比,显微硬度没有显著增加,退火10小时后,显微硬度甚至低于铸态样品。高熵合金在高温退火后相没有明显变化,表明在高温下具有良好的相稳定性。退火10小时后,显微硬度低于铸态样品。高熵合金在高温退火后相保持不变,证明在高温下具有良好的相稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a9e/10813983/6f4a3dc03c0a/entropy-26-00073-g001.jpg

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