Fracture size effects and polycrystalline inhomogeneity

Author:

Abdel-Tawab Khaled,Rodin Gregory J.

Publisher

Springer Netherlands

Reference28 articles.

1. Abdel-Tawab, K. and Rodin, G.J. (1993a). On the relevance of linear elastic fracture mechanics to ice. International Journal of Fracture 62, 171-181

2. Abdel-Tawab, K. and Rodin, G.J. (1993b). An interpretation of results of the fracture toughness tests on ice. Ice Mechanics 1993 (Edited by J.P. Dempsey, Z.P. Bazant, Y.D.S. Rajapakse and S.S. Sunder) AMD-Vol. 163, The American Society of Mechanical Engineers, New York, 49–60.

3. Adamson, R.M., Dempsey, J.P., DeFranco, S.J. and Xie, Y. (1995). Large-scale in-situ fracture experiments-Part I: Experimental aspects. Ice Mechanics 1995 (Edited by J.P. Dempsey and Y.D.S. Rajapakse), AMD-Vol. 207, The American Society of Mechanical Engineers, New York, 107–128.

4. Adamson, R.M., Schapiro, L.H. and Dempsey, J.P. (1997). Core-based SCB fracture of aligned first-year sea ice (Phases III and IV). Journal of Cold Regions Engineering 11, 30–44.

5. Ashby, M.F. and Jones, D.R.H. (1980). Engineering Materials I. Pergamon Press, New York.

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1. Research trends in ice mechanics;International Journal of Solids and Structures;2000-01

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