Skip to main content
Log in

Interaction between an interface crack and a parallel subinterface crack in dissimilar anisotropic composite materials

  • Published:
International Journal of Fracture Aims and scope Submit manuscript

Abstract

In this paper, the pseudo-traction method is combined with the edge-dislocation method (i.e. PTDM) to solve the interaction problem between an interface crack and a parallel subinterface crack in dissimilar anisotropic materials. After deriving the fundamental solutions for an interface crack loaded by normal or tangential tractions on both crack surfaces and the fundamental solutions for an edge dislocation beneath the interface in the lower anisotropic material, the interaction problem is reduced to a system of a singular integral equations by adopting the well-known superposition technique. The equations are then solved numerically with the aid of the Chebyshev numerical integration and the Chebyshev polynomial expansion technique. Several typical examples are calculated and numerical results are shown in figures and tables from which a series of valuable conclusions is obtained. Since the present results should be verified and since no previous results exist to compare them with a consistency check in introduced which starts from the conservation law of the J-integral in anisotropic cases. It is shown that the check provides a powerful tool to examine the results, although it really presents a necessary condition rather than a sufficient way to the crack-tip parameters of the interface crack and the subinterface crack in the dissimilar anisotropic materials.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Bassani, J.L. and Qu, J. (1989). Finite crack on bimaterial and bicrystal interfaces. Journal of Mechanics and Physics of Solids 37, 434–453.

    Google Scholar 

  • Clements, D.L. (1971). A crack between dissimilar anisotropic media. International Journal of Engineering Science 9, 257–265.

    Google Scholar 

  • Chen, Y.H. and Hasebe, N. (1994). Further investigation of comninou's EEF for an interface crack with completely closed face. International Journal of Engineering Science 32, 1037–1046.

    Google Scholar 

  • Chen, Y.Z. and Hasebe, N. (1994). Eigenfunction expansion and higher order weight function of interface cracks. ASME Journal of Applied Mechanics 61, 843–849.

    Google Scholar 

  • Chen, Y.H. and Hasebe, N. (1994). Interaction between a main-crack and a parallel microcrack in an orthotropic plane elastic solid. International Journal of Solids and Structures 31, 1877–1890.

    Google Scholar 

  • Comninou, M. (1977). The interface crack. ASME Journal of Applied Mechanics 44, 631–636.

    Google Scholar 

  • Comninou, M. (1978). The interface crack in a shear field. ASME Journal of Applied Mechanics 45, 287–290.

    Google Scholar 

  • Comninou, M. and Schmueser, D. (1979). The interface crack in a combined tension-compression and shear field. ASME Journal of Applied Mechanics 46, 345–348.

    Google Scholar 

  • England, A.H. (1965). A crack between dissimilar media. ASME Journal of Applied Mechanics 32, 400–402.

    Google Scholar 

  • Erdogan, F. and Gupta, G.P. (1972). On the numerical solution of singular integral equations. 29, 525–534.

    Google Scholar 

  • Gao, H. (1991). Weight function analysis of interface crack. ASME Journal of Applied Mechanics 58, 931–938.

    Google Scholar 

  • Gotoh, M. (1967). Some problems of bonded anisotropic plates with crack along the bond. International Journal of Fracture Mechanics 3, 253–260.

    Google Scholar 

  • Horii, H. and Nemat-Nasser, S. (1985). Interacting micro-cracks near the tips in the process zone of a macro-crack. International Journal of Solids Structures 21(7), 731–745.

    Google Scholar 

  • Hutchinson, J.W., Mear, M.E. and Rice, J.R. (1987). Crack paralleling an interface between dissimilar material. ASME Journal of Applied Mechanics 54, 828–832.

    Google Scholar 

  • Lekhnitskii, S.G. (1963). Theory of elasticity of an anisotropic body. Holden-Day, San Francisco.

  • Lu, H. and Lardner, T.J. (1992). Mechanics of subinterface crack in layered material. International Journal of Solids Structure 29, 669–688.

    Google Scholar 

  • Makoto Obata, Siavouche Nemat-Nasser and Yoshiaki Goto (1989). Branched cracks in anisotropic elastic solids. ASME Journal of Applied Mechanics 56, 858–864.

    Google Scholar 

  • Miller, G.R. (1989). Analysis of cracks near interfaces between dissimilar anisotropic materials. International Journal of Engineering Science 27(6), 667–678.

    Google Scholar 

  • Miller, G.R. and Stock, W.L. (1989). Analysis of branched interface cracks between dissimilar anisotropic media. ASME Journal of Applied Mechanics 56, 844–849.

    Google Scholar 

  • Ortiz, M. and Giannakopoulos, A.E. (1989). Maximal crack tip shielding by microcracking. ASME Journal of Applied Mechanics 56, 279–283.

    Google Scholar 

  • Qu, J. and Bassani, J.L. (1989). Cracks on bimaterial and bicrystal interfaces. Journal of Mechanics and Physics of Solids 37, 417–434.

    Google Scholar 

  • Rice, J.R. (1968). Mathematical analysis in the mechanics of fracture, in Fracture. (Edited by H. Liebowitz), Academic Press, New York, 2, 191–311.

    Google Scholar 

  • Rice, J.R. (1988). Elastic fracture mechanics concepts for interface cracks. ASME Journal of Applied Mechanics 55, 98–103.

    Google Scholar 

  • Suo, Z. (1989). Singularities interacting with interfaces and cracks. International Journal of Solids Structures 25, 1133–1142.

    Google Scholar 

  • Suo, Z. (1990). Singularities, interfaces and cracks in dissimilar anisotropic media. Proceedings of the Royal Society of London A427, 331–358.

    Google Scholar 

  • Ting, T.C.T. (1986). Explicit solution and invariance of the singularities at an interface crack in anisotropic composites. International Journal of Solids Structures 22, 965–983.

    Google Scholar 

  • Ting, T.C.T. (1990). Interface crack in anisotropic bimaterials. Journal of Mechanics and Physics of Solids 38, 505–513.

    Google Scholar 

  • Ting, T.C.T. (1995). Generalized dundurs constants for anisotropic bimaterials. International Journal of Solids Structures 32, 483–500.

    Google Scholar 

  • Wang, S.S. and Chai, I. (1993a). The interface crack between dissimilar anisotropic composite materials. ASME Journal of Applied Mechanics 50, 169–178.

    Google Scholar 

  • Wang, S.S. and Chai, I. (1993b). The interface crack behavior in dissimilar anisotropic composites under mixed mode loading. ASME Journal of Applied Mechanics 50, 179–183.

    Google Scholar 

  • Willis, J.R. (1971). Fracture mechanics of interfacial cracks. Journal of Mechanics and Physics of Solids 19, 353–368.

    Google Scholar 

  • Zhao, L.G. and Chen, Y.H. (1996). Interaction between an interface crack and a parallel subinterface crack. International Journal of Fracture 73, 279–291.

    Google Scholar 

  • Zhao, L.G. and Chen, Y.H. (1997). On the contribution of subinterface microcrack near tip of an interface crack to the J-integral in bimaterial solids. International Journal of Engineering Science 35, 387–407.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Wen-Ye, T., Yi-Heng, C. Interaction between an interface crack and a parallel subinterface crack in dissimilar anisotropic composite materials. International Journal of Fracture 102, 305–322 (2000). https://doi.org/10.1023/A:1007500201519

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/A:1007500201519

Navigation