TY - JOUR
T1 - Characterization of Mechanical Property Degradation of Ion-Irradiated Materials
AU - Mei, Luyao
AU - Guo, Xun
AU - Jin, Ke
N1 - Publisher Copyright:
Copyright © 2022 Mei, Guo and Jin.
PY - 2022/4/8
Y1 - 2022/4/8
N2 - Evaluating the degradation of mechanical properties under irradiation is crucial for nuclear structural materials. Although ion irradiations have been commonly used for fundamental research on irradiation effects and fast screening of potential materials, the mechanical property tests on ion-irradiated materials are challenging due to the shallow irradiation depth. The research progress on utilizing small-scale mechanical property tests to characterize the ion-irradiation induced mechanical property degradation is the focus of this review. While the current techniques can access the mechanical properties at the nano- to micro-scale from various perspectives, the rationality and accuracy of the existing data analysis models, e.g., for the size-dependence, remain unclear or debating, especially for the ion-irradiated materials, resulting in the lack of consistency and reliability of the evaluation of the irradiation effects of materials. Establishing a standardized method is highly demanded to quantitatively bridge the gap between micro- and macro-scale mechanical properties of ion irradiated materials.
AB - Evaluating the degradation of mechanical properties under irradiation is crucial for nuclear structural materials. Although ion irradiations have been commonly used for fundamental research on irradiation effects and fast screening of potential materials, the mechanical property tests on ion-irradiated materials are challenging due to the shallow irradiation depth. The research progress on utilizing small-scale mechanical property tests to characterize the ion-irradiation induced mechanical property degradation is the focus of this review. While the current techniques can access the mechanical properties at the nano- to micro-scale from various perspectives, the rationality and accuracy of the existing data analysis models, e.g., for the size-dependence, remain unclear or debating, especially for the ion-irradiated materials, resulting in the lack of consistency and reliability of the evaluation of the irradiation effects of materials. Establishing a standardized method is highly demanded to quantitatively bridge the gap between micro- and macro-scale mechanical properties of ion irradiated materials.
KW - ion irradiation
KW - mechanical property degradation
KW - nuclear structural materials
KW - size effects
KW - small-scale tests
UR - http://www.scopus.com/inward/record.url?scp=85128606802&partnerID=8YFLogxK
U2 - 10.3389/fmats.2022.849209
DO - 10.3389/fmats.2022.849209
M3 - Review article
AN - SCOPUS:85128606802
SN - 2296-8016
VL - 9
JO - Frontiers in Materials
JF - Frontiers in Materials
M1 - 849209
ER -