November 2018

Journal

Enhanced void swelling in NiCoFeCrPd high-entropy alloy by indentation-induced dislocations

By:
Lu, Chenyang; Yang, Taini; Jin, Ke ; Velisa, Gihan ; Xiu, Pengyuan; Song, Miao; Peng, Qing; Gao, Fei; Zhang, Yanwen ; Bei, Hongbin ; Weber, William J; Wang, Lumin
Journal Name:
Materials Research Letters
Page Number:
584-591
Volume:
6
Issue Number:
10
Publication Date:
November 13, 2018
View DOI Listing:
https://doi.org/10.1080/21663831.2018.1504136

Abstract

The role of dislocations on ion irradiation-induced void formation is studied in a high-entropy alloy (HEA) NiCoFeCrPd. Despite previous observations that show high-entropy alloys are swelling resistant due to a high defect recombination rate, the swelling is enhanced with increasing density of pre-existing dislocations at low strain levels that shortened transient duration before the onset of void swelling. Under certain irradiation conditions, a high density of dislocations may carry the material closer to the sink-dominated regime. Compared to another HEA NiCoFeCrMn, NiCoFeCrPd has a smaller loop size and higher loop density due to the stronger lattice distortion.