The effect of iodine content and specimen orientation on stress corrosion crack growth rate in Zircaloy-4
Author:
Publisher
Elsevier BV
Subject
General Materials Science,General Chemical Engineering,General Chemistry
Reference28 articles.
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3. Chemically assisted crack nucleation in zircaloy;Williford;J. Nucl. Mater.,1985
4. Anisotropic surface energy reduction of Zr by chemisorption;Hwang;J. Nucl. Mater.,1989
5. D. Cubicciotti, R.L. Jones, B.C. Syrett, Chemical aspects of iodine induced stress corrosion cracking of zircaloys, in: D.G. Franklin (Ed.), Zirconium in the nuclear industry, Fifth Conference, ASTM-STP 754, American Society for Testing and Materials, 1982, pp. 146–157.
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1. Influencing factors and mechanism of iodine-induced stress corrosion cracking of zirconium alloy cladding: A review;International Journal of Minerals, Metallurgy and Materials;2022-04
2. Iodine-induced stress corrosion cracking behavior of alloy ZIRLO with Zr coatings by electrodepositing with different pulse current densities;Corrosion Science;2021-12
3. Investigating iodine-induced stress corrosion cracking of zirconium alloys using quantitative fractography;Journal of Nuclear Materials;2020-10
4. Stress Corrosion Cracking of Structural Nuclear Materials: Influencing Factors and Materials Selection;Innovations in Corrosion and Materials Science (Formerly Recent Patents on Corrosion Science);2020-09-11
5. Pellet-Clad Interaction Behavior in Zirconium Alloy Fuel Cladding;Comprehensive Nuclear Materials;2020
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