Elastodynamic response of a crack perpendicular to the graded interfacial zone in bonded dissimilar materials under antiplane shear impact
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering
Link
http://link.springer.com/content/pdf/10.1007/BF02984252.pdf
Reference34 articles.
1. Abramowitz, M. and Stegun, I. A., 1972,Handbook of Mathematical Functions, Dover Pub., New York.
2. Babaei, R. and Lukasiewicz, S. A., 1998, “Dynamic Response of a Crack in a Functionally Graded Material Between Two Dissimilar Half-Planes Under Anti-Plane Shear Impact Load,”Eng. Fract. Mech., Vol. 60, pp. 479–487.
3. Bahr, H.-A., Balke, H., Fett, T., Hofinger, I., Kirchhoff, G., Munz, D., Neubrand, A., Semenov, A. S., Weiss, H.-J. and Yang, Y. Y., 2003, “Cracks in Functionally Graded Materials,”Mater. Sci. Eng. A, Vol. 362, pp. 2–16.
4. Becker Jr., T. L., Cannon, R. M. and Ritchie, R. O., 2001, “Finite Crack Kinking and T-Stresses in Functionally Graded Materials,”Int. J. Solids Struct., Vol. 38, pp. 5545–5563.
5. Chiu, T.-C. and Erdogan, F., 1999, “One-Dimensional Wave Propagation in a Functionally Graded Elastic Medium,”J. Sound Vib., Vol. 222, pp. 453–487.
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3. Elastodynamic Interaction of Two Offset Interfacial Cracks in Bonded Dissimilar Media With a Functionally Graded Interlayer Under Antiplane Shear Impact;Journal of Applied Mechanics;2014-05-20
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