TY - JOUR
T1 - Evolution of ion damage at 773K in Ni- containing concentrated solid-solution alloys
AU - Shi, Shi
AU - He, Mo Rigen
AU - Jin, Ke
AU - Bei, Hongbin
AU - Robertson, Ian M.
N1 - Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2018/4/1
Y1 - 2018/4/1
N2 - Quantitative analysis of the impact of the compositional complexity in a series of Ni-containing concentrated solid-solution alloys, Ni, NiCo, NiFe, NiCoCr, NiCoFeCr, NiCoFeCrMn and NiCoFeCrPd, on the evolution of defects produced by 1 MeV Kr ion irradiation at 773 K is reported. The dynamics of the evolution of the damage structure during irradiation to a dose of 2 displacements per atom were observed directly by performing the ion irradiations in electron transparent foils in a transmission electron microscope coupled to an ion accelerator. The defect evolution was assessed through measurement of the defect density, defect size and fraction of perfect and Frank loops. These three parameters were dependent on the alloying element as well as the number of elements. The population of loops was sensitive to the ion dose and alloy composition as faulted Frank loops were observed to unfault to perfect loops with increasing ion dose. These dependences are explained in terms of the influence of each element on the lifetime of the displacement cascade as well as on defect formation and migration energies.
AB - Quantitative analysis of the impact of the compositional complexity in a series of Ni-containing concentrated solid-solution alloys, Ni, NiCo, NiFe, NiCoCr, NiCoFeCr, NiCoFeCrMn and NiCoFeCrPd, on the evolution of defects produced by 1 MeV Kr ion irradiation at 773 K is reported. The dynamics of the evolution of the damage structure during irradiation to a dose of 2 displacements per atom were observed directly by performing the ion irradiations in electron transparent foils in a transmission electron microscope coupled to an ion accelerator. The defect evolution was assessed through measurement of the defect density, defect size and fraction of perfect and Frank loops. These three parameters were dependent on the alloying element as well as the number of elements. The population of loops was sensitive to the ion dose and alloy composition as faulted Frank loops were observed to unfault to perfect loops with increasing ion dose. These dependences are explained in terms of the influence of each element on the lifetime of the displacement cascade as well as on defect formation and migration energies.
KW - Concentrated solid-solution alloys
KW - Defect evolution
KW - Defect migration
KW - In situ ion irradiation
UR - http://www.scopus.com/inward/record.url?scp=85041386209&partnerID=8YFLogxK
U2 - 10.1016/j.jnucmat.2018.01.015
DO - 10.1016/j.jnucmat.2018.01.015
M3 - Article
AN - SCOPUS:85041386209
SN - 0022-3115
VL - 501
SP - 132
EP - 142
JO - Journal of Nuclear Materials
JF - Journal of Nuclear Materials
ER -