The influence of helium on the swelling behaviour by electron irradiation of a Mn-Cr austenitic stainless steel

Author:

Snykers M.,Ruedl E.

Publisher

Elsevier BV

Subject

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

Reference6 articles.

1. Observations of microstructure and void formation in a 8 % Mn stainless steel (ICL 016) irradiated with 46 MeV nickel ions;Mazey;AERE-R-9931,1980

2. Radiation damage simulation experiments on a Mn-Cr austenitic stainless steel in a HVEM;Snykers,1980

3. The use of the JEM 1250 HVEM of the University of Antwerp (RUCA) as an instrument for void swelling simulation experiments;Snykers;BLG 521,1978

4. Void swelling in SA FV 548 steel irradiated in a HVEM;Williams;J. Nucl. Mat.,1976

5. Void swelling in metals and alloys under irradiation: an assessment of the theory;Mansur;Nucl. Technology,1978

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1. Molecular dynamics modeling of helium bubbles in austenitic steels;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2018-06

2. Effect of additional minor elements on microstructural evolution of neutron irradiated FeCrMn alloys;Journal of Nuclear Materials;1992-09

3. Effect of alloying elements on phase stability in neutron-irradiated Fe-Cr-Mn model alloys;Journal of Nuclear Materials;1991-03

4. Developments in austenitic steels containing manganese;International Materials Reviews;1989-01

5. Precipitation at Grain Boundaries in Irradiated Austenitic Fe-Cr-Mn Alloys;MRS Proceedings;1989

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