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含Ti低活化FeCrV基中熵合金的铅铋腐蚀性能研究
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作者 杨文平 夏松钦 佟振峰 《核科学与技术》 2024年第3期151-161,共11页
本研究采用电弧熔炼法制备了低活化且等原子比的FeCrV以及含Ti的FeCrVTi中熵合金,并对其相结构和铅铋腐蚀性能进行了研究。在相组成方面,表征结果显示FeCrV合金为BCC单相结构,FeCrVTi合金为BCC + Laves双相结构,同时表征结果与热力学参... 本研究采用电弧熔炼法制备了低活化且等原子比的FeCrV以及含Ti的FeCrVTi中熵合金,并对其相结构和铅铋腐蚀性能进行了研究。在相组成方面,表征结果显示FeCrV合金为BCC单相结构,FeCrVTi合金为BCC + Laves双相结构,同时表征结果与热力学参数经验标准的预测结果相互吻合,证实了利用热力学参数开发与设计合金的可行性。然后,耐铅铋腐蚀性能方面,结果发现由于Ti的加入,FeCrVTi合金的耐铅铋腐蚀性能与FeCrV合金相比并未得到提升,同时还有一定程度的腐蚀层脱落现象。最后,通过表面和截面分析合金的腐蚀机理,推断出FeCrV合金以氧化腐蚀为主,而FeCrVTi合金以BCC相的氧化腐蚀和Laves相的溶解腐蚀为主。本研究为铅冷快堆和ADS系统的耐铅铋腐蚀性和低活化性结构材料的开发提供了新的思路和观点。 展开更多
关键词 低活化材料 中熵合金 铅铋腐蚀 LAVES相
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高熵合金的制备及性能 被引量:6
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作者 何胜豪 程芳 +4 位作者 夏松钦 刘薇 郭冰 郭驾宇 沈杭燕 《热加工工艺》 北大核心 2022年第18期22-29,共8页
高熵合金由于具有高强度、高硬度、高塑性、良好的耐磨性、耐蚀性、抗高温软化和低温脆化及抗辐照性能,是较有应力潜力的高性能结构材料,已经成为国内外材料科学前沿领域的热点研究方向。介绍了国内外高熵合金的研究现状,对高熵合金现... 高熵合金由于具有高强度、高硬度、高塑性、良好的耐磨性、耐蚀性、抗高温软化和低温脆化及抗辐照性能,是较有应力潜力的高性能结构材料,已经成为国内外材料科学前沿领域的热点研究方向。介绍了国内外高熵合金的研究现状,对高熵合金现阶段的制备方法、组织特性、宏观性能、合金设计、计算机模拟设计等进行了概述,最后对高熵合金的发展和应用前景进行了展望。 展开更多
关键词 高熵合金 制备 合金设计 模拟计算 组织特征 性能
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Helium-hydrogen synergistic effects on swelling in in-situ multiple-ion beams irradiated steels
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作者 Haocheng Liu Jia Huang +12 位作者 Liuxuan Cao Yue Su Zhiying Gao Pengfei Ma Songqin Xia Wei Ge Qingyuan Liu Shuang Zhao Yugang Wang Jinchi Huang Zhehui Zhou Pengfei Zheng Chenxu Wang 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第8期82-88,共7页
The development of reliable fusion energy is one of the most important challenges in this century.The accelerated degradation of structural materials in fusion reactors caused by neutron irradiation would cause severe... The development of reliable fusion energy is one of the most important challenges in this century.The accelerated degradation of structural materials in fusion reactors caused by neutron irradiation would cause severe problems.Due to the lack of suitable fusion neutron testing facilities,we have to rely on ion irradiation experiments to test candidate materials in fusion reactors.Moreover,fusion neutron irradiation effects are accompanied by the simultaneous transmutation production of helium and hydrogen.One important method to study the He-H synergistic effects in materials is multiple simultaneous ion beams(MSIB)irradiation that has been studied for decades.To date,there is no convincing conclusion on these He-H synergistic effects among these experiments.Recently,a multiple ion beam in-situ transmission electron microscopy(TEM)analysis facility was developed in Xiamen University(XIAMEN facility),which is the first triple beam system and the only in-running in-situ irradiation facility with TEM in China.In this work,we conducted the first high-temperature triple simultaneous ion beams irradiation experiment with TEM observation using the XIAMEN facility.The responses to in-situ triple-ion beams irradiation in austenitic steel 304L SS and ferritic/martensitic steel CLF-1 were studied and compared with the results in dual-and single-ion beam(s)irradiated steels.Synergistic effects were observed in MSIB irradiated steels.Helium was found to be critical for cavity formation,while hydrogen has strong synergistic effect on increasing swelling. 展开更多
关键词 helium–hydrogen synergistic effect multiple ion beams structural material SWELLING
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