Dynamic Fracture Criteria for Crack Growth Along Bimaterial Interfaces
Author:
Affiliation:
1. Dynamic Photomechanics Laboratory, Department of Mechanical Engineering and Applied Mechanics, University of Rhode Island, Kingston, RI 02881
Abstract
Publisher
ASME International
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Link
http://asmedigitalcollection.asme.org/appliedmechanics/article-pdf/65/2/293/5465206/293_1.pdf
Reference17 articles.
1. Deng X. 1992, “Complete Complex Series Expansions of Near Tip Fields for Steadily Growing Interface Cracks in Dissimilar lsotropic Materials,” Engineering Fracture Mechanics, Vol. 42, No. 2, pp. 237–242.
2. Kobayashi, Y., and Dally, J. W., 1977, “The Relation Between the Crack Velocity and the Stress Intensity Factor in Birefringent Polymers,” ASTM STP 627, pp. 257–273.
3. Lambros J. , and RosakisA. J., 1995a, “Development of a Dynamic Decohesion Criterion for Subsonic Fracture of the Interface Between Two Dissimilar Materials,” Proceedings of the Royal Society, London, Vol. A451, pp. 711–736.
4. Lambros J. , and RosakisA. J., 1995b, “Shear Dominated Transonic Crack Growth in Bimaterials, Part I: Experimental Observations,” Journal of Mechanics and Physics of Solids, Vol. 43, No. 2, pp. 169–188.
5. Liechti K. M. , and KnaussW. G. 1982, “Crack Propagation at Material Interfaces: II Experiments on Mode Interaction,” Experimental Mechanics, Vol. 22, pp. 383–391.
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