A Damage Mechanics Treatment of Creep Failure in Rock Salt

Author:

Chan K. S.1,Bodner S. R.1,Fossum A. F.2,Munson D. E.3

Affiliation:

1. Southwest Research Institute, P.O. Drawer 28510, San Antonio, TX 78228-0510

2. RE/SPEC Inc., Rapid City, SD 57709

3. Sandia National Laboratories, Albuquerque, NM 87185

Abstract

Recent progress in the formulation of a constitutive model for describing coupled creep and damage development in rock salt is summarized. The constitutive model is based on the assumption that both dislocation slip and creep damage in the form of microcracks with possible wing-tips contribute to the macroscopic inelastic strain rate. The relevant kinetic equations, flow law, and damage evolution equation are presented. Evaluations are made of the coupled creep and fracture model against the measured creep response of clean salt from the Waste Isolation Pilot Plant (WIPP) site. In addition, the development of creep damage and the rupture of WIPP salt subjected to either triaxial compression or indirect tension have been analyzed to evaluate several creep rupture criteria.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science,Computational Mechanics

Reference50 articles.

1. Ashby, M. F. and B. F. Dyson. 1984. In Advances in Fracture Research (Fracture 84). S. R. Valluri, D. M. R. Taplin, P. Rama Rao, J. F. Knott and R. Dubey, eds. Oxford: Pergamon Press. 1:3-30.

2. The failure of brittle solids containing small cracks under compressive stress states

3. Aubertin, M. , D. E. Gill and B. Ladanyi. 1993. In 7th Symp. on Salt, Amsterdam: Elsevier Science Publ., 1:93-104.

4. Aubertin, M. , J. Sgaoula and D. E. Gill. 1993. In 7th Symp. on Salt. Amsterdam: Elsevier Science Publications, 1:117-125.

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