Role and significance of source hardening in radiation embrittlement of iron and ferritic steels

Author:

Linga Murty K.

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics

Reference31 articles.

1. G.E. Lucas, G.R. Odette, E. Mader, F. Haggag, R. Nanstad, Effects of composition and temperature on irradiation hardening of pressure vessel steels, Proceedings of the Fifth International Symposium on Environmental Degradation of Materials in Nuclear Power Systems – Water Reactors, American Nuclear Society, 1992, pp. 696–703

2. M.S. Wechsler, K.L. Murty, Proceedings of Symposium on Irradiation–Enhanced Materials Science and Engineering, Metall. Trans. 20A (1989) 2637

3. Y.H. Jung, K.L. Murty, Effect of interstitial impurities on fracture characteristics of A533B class1 pressure vessel steel, 13th International Symposium on Influence of Radiation on Mechanical Properties, ASTM STP 956, 1987, pp. 395–407

4. J.H. Hong, K.L. Murty, Effect of dynamic strain aging and neutron irradiation on fracture characteristics of various steels and iron, Proceedings of ASM Symposium on Microstructure and Mechanical Properties of Aging Materials, Chicago, 26–29 October 1992, pp. 391–397

5. Microstructural aspects of neutron embrittlement of reactor pressure vessel steels - A view from positron annihilation spectroscopy

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