Anisotropy factors from texture and mechanical strain in Zircaloy-4 fuel sheaths
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference36 articles.
1. R.A. Holt, W. Evans, B.A. Cheadle, The role of zirconium alloy metallurgy in the fabrication of CANDU fuel, Atomic Energy of Canada Ltd., Report AECL-5107, 1975.
2. Identification of second-phase particles in zircaloy-4 nuclear fuel sheating
3. Influence of the phosphorus impurity content on the microstructure of Zircaloy-4 air cooled from the high temperature beta phase region
4. Effect of alpha/beta phase constitution on superplasticity and strength of Zircaloy-4
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1. Understanding the Mechanism for the In-Plane Yielding Anisotropy of a Hot-Rolled Zirconium Plate;Acta Metallurgica Sinica (English Letters);2024-04-22
2. Influence of texture and microstructural evolution on ductility and tensile behaviour of annealed Zircaloy-4 processed through swaging;Journal of Materials Research and Technology;2022-07
3. Modeling of flux-dependent fluence effect on in-reactor deformation in Zr-alloy tubes;Journal of Nuclear Materials;2022-06
4. Polycrystalline simulations of in-reactor deformation of recrystallized Zircaloy-4 tubes: Fast Fourier Transform computations and mean-field self-consistent model;International Journal of Plasticity;2022-06
5. Development of a method for calculating the LTEC anisotropy of Zr alloys;Journal of Physics: Conference Series;2021-12-01
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