Krishan, K. ; Balakrishnan, V. ; Ray, S. K. (1979) Evaluation of irradiation-induced creep rate: application to the vacancy dislocation loop contribution Pramana - Journal of Physics, 12 (3). pp. 275-289. ISSN 0304-4289
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Official URL: http://www.ias.ac.in/j_archive/pramana/12/3/275-28...
Related URL: http://dx.doi.org/10.1007/BF02846396
Abstract
Irradiation (as in a nuclear reactor) drastically affects the defect structure and its time evolution in a material, and induces new creep mechanisms in it. We present a formalism to evaluate the contribution to creep owing to such mechanisms. Beginning with the phenomenological constitutive relation for the strain appropriate to a given mechanism, we put in simple statistical considerations to derive an expression for the corresponding creep rate. This formal expression is in terms of the defect production rate and a non-equilibrium probability distribution function involving the pertinent properties of the defect type concerned. A convenient approximation scheme for practical calculations is employed, that also makes contact with standard rate theory and provides a proper interpretation for the variables occurring there. As an illustration, we evaluate the contribution to irradiation-induced creep from the orientation-dependent shrinkage of vacancy dislocation loops in an applied stress field. The circumstances inducing transient and non-transient creep are clarified and a numerical estimate is given for the latter component.
Item Type: | Article |
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Source: | Copyright of this article belongs to Indian Academy of Sciences. |
Keywords: | Stress; Creep; Irradiation; Vacancy Dislocation Loops; Rate Theory; Distribution Functions |
ID Code: | 1064 |
Deposited On: | 25 Sep 2010 11:10 |
Last Modified: | 16 May 2016 12:14 |
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