Corrosion–erosion and mass transfer dynamic behaviors of reduced activation ferritic/martensitic steel in a nonisothermal Pb-17Li system
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference16 articles.
1. Evaluation of thermal conductivity for liquid lead lithium alloys at various Li concentrations based on measurement and evaluation of density thermal diffusivity and specific heat of alloys;Kondo;Fusion Eng. Des.,2016
2. Investigation of models to predict the corrosion of steels in flowing liquid lead alloys;Balbaud-Celerier;J. Nucl. Mater.,2001
3. The compatibility of austenitic materials with liquid Pb-17Li;Simon;Corros. Sci.,2001
4. Corrosion behavior of low activation steels in flowing Pb-17Li;Glasbrenner;J. Nucl. Mater.,2000
5. Compatibility of reduced activation ferritic martensitic steel JLF-1 with liquid metals Li and Pb–17Li;Kondo;Fusion Eng. Des.,2012
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2. Atomic-scale insights into the precipitation behaviors of copper atoms in liquid lithium;Fusion Engineering and Design;2023-09
3. Effect of applied stress on the ductility of RAFM steel during long-term exposure in flowing Pb-17Li;Fusion Engineering and Design;2023-07
4. Corrosion mechanism of reduced activation ferritic martensitic steel JLF-1 in liquid metal Sn;Corrosion Science;2022-12
5. First Principles Study on the Dissolution Corrosion Behavior of RAFM Steel in the Liquid PbLi;Journal of Nuclear Materials;2022-05
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