Yang Tengfei, Xia Songqin, Liu Shi, Wang Chenxu, Liu Shaoshuai, Fang Yuan, Zhang Yong, Xue Jianming, Yan Sha, Wang Yugang
State Key Laboratory of Nuclear Physics and Technology, Center for Applied Physics and Technology, Peking University, Beijing 100871, People's Republic of China.
State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing 100083, China.
Sci Rep. 2016 Aug 26;6:32146. doi: 10.1038/srep32146.
Materials performance is central to the satisfactory operation of current and future nuclear energy systems due to the severe irradiation environment in reactors. Searching for structural materials with excellent irradiation tolerance is crucial for developing the next generation nuclear reactors. Here, we report the irradiation responses of a novel multi-component alloy system, high entropy alloy (HEA) AlxCoCrFeNi (x = 0.1, 0.75 and 1.5), focusing on their precipitation behavior. It is found that the single phase system, Al0.1CoCrFeNi, exhibits a great phase stability against ion irradiation. No precipitate is observed even at the highest fluence. In contrast, numerous coherent precipitates are present in both multi-phase HEAs. Based on the irradiation-induced/enhanced precipitation theory, the excellent structural stability against precipitation of Al0.1CoCrFeNi is attributed to the high configurational entropy and low atomic diffusion, which reduces the thermodynamic driving force and kinetically restrains the formation of precipitate, respectively. For the multiphase HEAs, the phase separations and formation of ordered phases reduce the system configurational entropy, resulting in the similar precipitation behavior with corresponding binary or ternary conventional alloys. This study demonstrates the structural stability of single-phase HEAs under irradiation and provides important implications for searching for HEAs with higher irradiation tolerance.
由于反应堆中存在严苛的辐照环境,材料性能对于当前及未来核能系统的良好运行至关重要。寻找具有优异辐照耐受性的结构材料对于开发下一代核反应堆至关重要。在此,我们报道了一种新型多组分合金体系——高熵合金(HEA)AlxCoCrFeNi(x = 0.1、0.75和1.5)的辐照响应,重点关注其析出行为。研究发现,单相体系Al0.1CoCrFeNi在离子辐照下表现出很高的相稳定性。即使在最高注量下也未观察到析出物。相比之下,两种多相高熵合金中都存在大量相干析出物。基于辐照诱导/增强析出理论,Al0.1CoCrFeNi优异的抗析出结构稳定性归因于高组态熵和低原子扩散率,它们分别降低了热力学驱动力并从动力学上抑制了析出物的形成。对于多相高熵合金,相分离和有序相的形成降低了系统组态熵,导致其析出行为与相应的二元或三元传统合金相似。本研究证明了单相高熵合金在辐照下的结构稳定性,并为寻找具有更高辐照耐受性的高熵合金提供了重要启示。