Theory of dislocation-creep due to the frenkel defects or interstitialcies produced by bombardment with energetic particles
- 1 February 1972
- journal article
- research article
- Published by Taylor & Francis in Philosophical Magazine
- Vol. 25 (2) , 345-354
- https://doi.org/10.1080/14786437208226809
Abstract
When, a material is subjected to stress whilst being bombarded with a flux of energetic particles it often creeps at a temperature-independent rate which varies with the product of flux and stress. The present paper shows that this simple class of behaviour is, theoretically, to be expected in materials containing a three-dimensional network of dislocations that absorb interstitials ('I-creep') or interstitials plus vacancies ‘F-creep'). The dislocations climb into positions where they can bow out until their curvature produces an opposing force virtually equal to that due to the external stress. From the Mott—Friedel equation for dislocation-bowing the resultant creep strain has been calculated and proves to be comparable in magnitude to that measured experimentally.Keywords
This publication has 7 references indexed in Scilit:
- Irradiation Creep in the Dounreay Fast ReactorNature, 1969
- Voids in Irradiated Stainless SteelNature, 1967
- Implications of some data on relaxation creep in nimonic 80aPhilosophical Magazine, 1964
- The elastic constants of polycrystalline carbons and graphitesPhilosophical Magazine, 1964
- Constantes elastiques et frottement interieur de l'aluminium polygoniseActa Metallurgica, 1955
- XLVI. Anomaly in the rigidity modulus of copper alloys for small concentrationsJournal of Computers in Education, 1953
- CXVII. A theory of work-hardening of metal crystalsJournal of Computers in Education, 1952