Detection and analysis of microscopically invisible cascade defects in 14 MeV neutron irradiated aluminum and iron
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference21 articles.
1. Defect structure evolution from radiation damage with D-T fusion neutrons
2. Observation and analysis of defect structure evolution from radiation damage by D-T fusion neutrons
3. Factors controlling the nature and amount of residual defects in neutron irradiated materials
4. Cascade-overlap effect on defect structure evolution revealed by repeated D-T neutron irradiation
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1. Surface effects and statistical laws of defects in primary radiation damage: Tungsten vs. iron;EPL (Europhysics Letters);2016-08-01
2. Displacement damage rate dependence of defect cluster formation in α-Fe during irradiation;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2013-05
3. Recent Progress in Radiation Damage and Lattice Defects in Metals;Journal of the Japan Institute of Metals;2009
4. Microstructure of neutron-irradiated iron before and after tensile deformation;Journal of Nuclear Materials;2006-06
5. Formation of stacking-fault tetrahedra in aluminum irradiated with high-energy particles at low-temperatures;Physical Review B;2004-03-11
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