Zhou Weiyue, Yang Yang, Zheng Guiqiu, Woller Kevin B, Stahle Peter W, Minor Andrew M, Short Michael P
Department of Nuclear Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.
National Center for Electron Microscopy, Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.
Nat Commun. 2020 Jul 9;11(1):3430. doi: 10.1038/s41467-020-17244-y.
The effects of ionizing radiation on materials often reduce to "bad news". Radiation damage usually leads to detrimental effects such as embrittlement, accelerated creep, phase instability, and radiation-altered corrosion. Here we report that proton irradiation decelerates intergranular corrosion of Ni-Cr alloys in molten fluoride salt at 650 °C. We demonstrate this by showing that the depth of intergranular voids resulting from Cr leaching into the salt is reduced by proton irradiation alone. Interstitial defects generated from irradiation enhance diffusion, more rapidly replenishing corrosion-injected vacancies with alloy constituents, thus playing the crucial role in decelerating corrosion. Our results show that irradiation can have a positive impact on materials performance, challenging our view that radiation damage usually results in negative effects.
电离辐射对材料的影响通常都归结为“坏消息”。辐射损伤通常会导致诸如脆化、加速蠕变、相不稳定以及辐射改变的腐蚀等有害影响。在此我们报告,质子辐照可减缓镍铬合金在650°C的熔融氟化物盐中的晶间腐蚀。我们通过表明仅质子辐照就能减少因铬溶入盐中而产生的晶间空隙深度来证明这一点。辐照产生的间隙缺陷增强了扩散,能更迅速地用合金成分补充腐蚀注入的空位,从而在减缓腐蚀中发挥关键作用。我们的结果表明,辐照可对材料性能产生积极影响,这挑战了我们认为辐射损伤通常会导致负面影响的观点。