One dimensional motion of interstitial clusters and void growth in Ni and Ni alloys
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference20 articles.
1. Production bias and cluster annihilation: Why necessary?
2. Defect interaction processes controlling the accumulation of defects produced by high energy recoils
3. Defect accumulation in fcc and bcc metals and alloys under cascade damage conditions – Towards a generalisation of the production bias model
4. Computer simulation of fundamental behaviors of interstitial clusters in Fe and Ni
5. Mechanisms for decoration of dislocations by small dislocation loops under cascade damage conditions
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2. A mechanism-based quantitative multi-scale framework for investigating irradiation hardening of tungsten at low temperature;Materials Science and Engineering: A;2020-02
3. In-situ observation of the dynamic behavior of cascade defect clusters formed by irradiation with high-energy self-ions at 50 K in Cu;Journal of Nuclear Materials;2018-12
4. Effect of alloying elements on defect evolution in Ni-20X binary alloys;Acta Materialia;2018-06
5. Dynamic behaviour of nanometre-sized defect clusters emitted from an atomic displacement cascade in Au at 50 K;Philosophical Magazine;2017-05-29
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