钨
抗辐射性
辐射
高熵合金
材料科学
冶金
物理
光学
合金
作者
Osman El‐Atwani,Nan Li,M. Li,Arun Devaraj,Jon K. Baldwin,Matthew M. Schneider,Damian Sobieraj,Jan Wróbel,D. Nguyen-Manh,S.A. Maloy,Enrique Martínez
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2019-03-01
卷期号:5 (3)
被引量:512
标识
DOI:10.1126/sciadv.aav2002
摘要
A body-centered cubic W-based refractory high entropy alloy with outstanding radiation resistance has been developed. The alloy was grown as thin films showing a bimodal grain size distribution in the nanocrystalline and ultrafine regimes and a unique 4-nm lamella-like structure revealed by atom probe tomography (APT). Transmission electron microscopy (TEM) and x-ray diffraction show certain black spots appearing after thermal annealing at elevated temperatures. TEM and APT analysis correlated the black spots with second-phase particles rich in Cr and V. No sign of irradiation-created dislocation loops, even after 8 dpa, was observed. Furthermore, nanomechanical testing shows a large hardness of 14 GPa in the as-deposited samples, with near negligible irradiation hardening. Theoretical modeling combining ab initio and Monte Carlo techniques predicts the formation of Cr- and V-rich second-phase particles and points at equal mobilities of point defects as the origin of the exceptional radiation tolerance.
科研通智能强力驱动
Strongly Powered by AbleSci AI