DOI QR코드

DOI QR Code

A Study on the Crack Propagation Criterion of Orthotropic Material by the Static Photoelastic Experimental Hybrid Method

정적 광탄성 실험 하이브리드법에 의한 직교이방성체의 균열전파 기준에 관한 연구

  • 신동철 (영남대학교 기계공학부) ;
  • 황재석 (영남대학교 기계공학부) ;
  • 남성수 (영남대학교 대학원 기계공학부) ;
  • 권오성 (영남대학교 대학원 기계공학부)
  • Published : 2004.11.01

Abstract

The static photoelastic experiment was applied to orthotropic materials. And then the specimens used in photoelastic experiment were fractured under static load. The static photoelastic experimental hybrid method for orthotropic material was introduced and its validity had been assured. Crack propagation criterion used the stress components, which are considered the higher order terms, obtained from the static photoelastic experimental hybrid method was introduced and it was applied to the minimum strain energy density criterion, the maximum tangential stress criterion and mode mixity. Comparing the actual initial angle of crack propagation with the theoretical initial angle of crack propagation obtained from the above failure criterions, the validities of the above two criterions are assured and the optimal distance (${\gamma}$) from the crack-tip is 0.01mm in order to get the initial angle of crack propagation of orthotropic material(C.F.E.C.).

Keywords

References

  1. Hawong, J. S., Lin, C. H., Lin, S. T., Rhee, J. and Rowlands, R. E., 1995, 'A Hybrid Method to Determine Individual Stresses in Orthotropic Composites Using Only Measured Isochromatic Data,' Journal of Composite Material, Vol. 29, No. 18, pp. 2366-2387 https://doi.org/10.1177/002199839502901801
  2. Shin, D. C., Hawong, J. S., Lee, H. J., Nam, J. H. and Kwon, O. S., 1998, 'Application of Transparant Photoelastic Experiment Hybrid Method to the Fracture Mechanics of Isotropic Material,' Tans. Of KSME (A), Vol. 22, No.5, pp. 834-842
  3. Shin, D. C., Hawong, J. S., Nam, J. H., Lee, H. J. and Kwon, O. S., 1998, 'Application of Transparant Photoelastic Experimental Hybrid Method for the Fracture Mechanics of Orthotropic Material,' Tans. Of KSME (A), Vol. 22, No.6, pp. 1036-1044
  4. Hawong, J. S., Shin, D. C. and Lee, H. J., 2001, 'Photoelastic Experimental Hybrid Method for Fracture Mechanics of Anisotropic Materials,' Experimental Mechanics, Vol. 41, No. 1, pp. 92-99 https://doi.org/10.1007/BF02323110
  5. Griffith, A. A., 1921, 'The Phenomena of Rupure and Flow in Solids,' Phi. Trans. Royal Soc. London A, Vol. 221, pp. 163-198 https://doi.org/10.1098/rsta.1921.0006
  6. Hussain, M. A., Pu, S. L. and Underwood, J., 1974, 'Strain Energy Release Rate for a Crack under Combined Mode I and Mode II,' Fract. Anai. ASTM STP, Vol. 560, pp. 2-28 https://doi.org/10.1520/STP33130S
  7. Erdogan, F. and Sih, G. C., 1963, 'On the Crack Extension in Plates under Plane Loading and Transverse Shear,' Tran. ASME, pp. 519-528 https://doi.org/10.1115/1.3656897
  8. Williams, J. G. and Ewing, P. D., 1972, 'Fracture under Complex Stress the Angled Crack Problem,' Int. J. Frac. Mech., Vol. 8, No.4, pp. 441-445 https://doi.org/10.1007/BF00113931
  9. Sih, G. C., 1973, 'A Special Theory of Crack Propagation: Method of Analysis and Solutions of Crack Problem,' Mechanics of Fracture I, Edited by G. C. Sih, Noord Noordhoff International Publishing, Leyden, pp. 15-53
  10. Sih, G. C., 1974, 'Strain-Energy-Density Factor Applied to Mixed Crack Problems,' Int. J. Frac .. Vol. 10, No.3. pp. 305-321 https://doi.org/10.1007/BF00035493
  11. Theocaris, P.S. and Andrianopoulos, N. P., 1982, 'The Mises Elastic-Plastic Boundary as the Core Region in Fracture Criteria,' Eng. Fract. Mech., Vol. 16, pp. 425-432 https://doi.org/10.1016/0013-7944(82)90120-5
  12. Theocaris, P.S. and Andrianopoulos, N.P., 1982, 'A Modified Strain-Energy Density Criterion Applied to Crack Propagation,' ASME Journal of Applied Mechanics, Vol. 49, pp.81-86 https://doi.org/10.1115/1.3162075
  13. Sih, C. C., Liebowitz, H., 1968, 'Mathematical Theories of Brittle Fracture,' Fracture an Advanced Treatise, Academic Press, New York, Vol. II, pp. 67-190
  14. Gerhardt, T. D., 1984, 'A Hybrid/Finite Element Approach for Stress Analysis of Notched Anisotropic Materials,' Journal of Applied Mechanics, Vol. 51, pp. 804-810 https://doi.org/10.1115/1.3167728
  15. Sampson, R. C., 1970, 'A Stress-Optic Law for Photoelastic Analysis of Orthotropic Composites,' Exp Mech., Vol. 10, pp. 210-215 https://doi.org/10.1007/BF02324034
  16. Hawong, J. S., Shimamoto, A., Takahashi. S. and Choi, S. H., 1990, 'Study on the Development of Photoelastic Experiment Composite Material,' JSME Serises I, Vol.33, No.1, pp. 89-95
  17. Shin, D. C., Hawong, J. S. and Nam, S. S., 2004, 'Application of the Static Photoelastic Experimental Hybrid Method to the Crack Propagation Criterion for Isotropic Materials,' Tans. of KSME (A), Vol. 28, No.8, pp. 1229-1236 https://doi.org/10.3795/KSME-A.2004.28.8.1229