1991
DOI: 10.1002/pssb.2221670210
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Void Sink Strength in H.C.P. Materials

Abstract: The strength of a void in h.c.p. lattices for the trapping of vacancies and interstitials is calculated. An analytic solution for the diffusion equation of point defects is used. The resulting expressions can be introduced in rate theory models, for simulating the performance of nuclear reactor components. The effect of a stress field on the anisotropic diffusion of vacancies and interstitials is studied. A discrete lattice approximation is used for calculating the elastodiffusion tensors. The dependence of th… Show more

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Cited by 11 publications
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“…Analytic expressions of d … ¶ ; ¶ 0 † for hcp metals as a function of Grande (1987) and Smetniansky-de Grande et al (1991). There is little information on the dipole tensors for point defects in hcp metals.…”
Section: } 3 Internally Pressurized Tubementioning
confidence: 99%
“…Analytic expressions of d … ¶ ; ¶ 0 † for hcp metals as a function of Grande (1987) and Smetniansky-de Grande et al (1991). There is little information on the dipole tensors for point defects in hcp metals.…”
Section: } 3 Internally Pressurized Tubementioning
confidence: 99%