DOI QR코드

DOI QR Code

Propagation Behavior of the Interface Crack Through a Hole

구멍을 통과하는 계면균열의 전파거동

  • Published : 2000.11.01

Abstract

The dynamic photoelasticity with the aid of Cranz-Shardin type high speed camera system is utilized to record the dynamically propagating behavior of an interface crack. This paper investigates determined the effects of the hole (exited on the path of the crack propagation) on the crack propagation behavior by comparing the experiment isochromatic fringes to the theoretical stress fields.

Keywords

References

  1. Rice, J. R and Sih, G. C., 1965, 'Plane Problems of Cracks in Dissimilar Media,' Journal of Applied Mechanics, Vol. 32, pp. 418-423
  2. Comninou, M., 1977, 'The Interface Crack,' Journal of Applied Mechanics, Vol. 44, pp. 631-636
  3. Barber, J. R. and Comninou, M., 1983, 'The Penny-Shaped Interface Crack With Heat Flow,' Journal of Applied Mechanics, Vol. 50, pp. 770-776
  4. Martin-Morgan et al., 1983, 'The Penny-Shaped Interface Crack With Heat Flow,' Journal of Applied Mechanics, vol. 50, pp. 29-36
  5. Lee O. S. and Kang H. S., 1998, 'Effects of Interface Thickness on Stress Field around Interface Crack,' Korea Society of Automotive Engineers, Vol II, pp. 437-440
  6. Deng, X., 1993, 'General Crack-Tip Fields for Stationary and Steadily Growing Interface Cracks in Aniso-tropic Bimaterials,' Journal of Applied Mechanics, Vol. 60, pp. 183-189
  7. Dally, J. W. and Riley, W. F., 1991, Experimental Stress Analysis, McGraw Hill, pp. 424-506
  8. Singh, R. P. and Shukla, A., 1996, 'Characteri-zation of isochromatic fringe patterns for a dynamically propagating interface crack,' International Journal of Fracture, pp. 293-310
  9. Ouk Sub Lee, Jae Chul Park, Gyu Hyun Kim, 2000, 'Dynamic mixed mode crack propagation behavior of structural bonded joints,' KSME International Journal, Vol. 14, No. 7, pp. 752-763