ICF13B

13th International Conference on Fracture June 16–21, 2013, Beijing, China -10- References 1. Chao, Y.J., Liu, S., and Broviak, B.J. (1999). Variation of fracture toughness with constraint of PMMA specimens. Proceedings of ASME-PVP 393, 113–120. 2. Hadj Meliani M., Pluvinage G., Matvienko Y.G. (2011). Two Parameter Fracture Criterion (Kρ-Tef) Derived From Notch Fracture Mechanics. Internal Journal of Fracture. 167:173–182. 3. M. Hadj Meliani, Z. Azari, G. Pluvinage, Y.G.Matvienko (2011).Variation of Material Failure Curve with Constraint. Procedia Engineering. 10. 710-715. 4. Yang, B. Ravi-Chandar, K. (1999). Evaluation of elastic T-stress by the stress difference method. Engng Fract Mech. 64:589-605. 5. Chao Y.J., Liu S. and Broviak B.J. Brittle fracture (2011). variation of fracture toughness with constraint and crack curving under mode I conditions .Experimental Mechanics, 41, 3, pp 232-241. 6. Hadj Meliani M., Azari Z., Matvienko Y.G., Pluvinage G. (2011).The Effect of Hydrogen on the Material Failure Curve of APL 5L Gas Pipe Steels. Procedia Engineering. 10. 942-947 7. Hadj Meliani M, Azari Z, Pluvinage G, Capelle J (2010). Gouge assessment for pipes and associated transferability problem. Engng Failure Analysis; 17: 1117-1126. 8. Ayatollahi, M.R., Pavier, M.J., and Smith, D.J. (2002). Mode I cracks subjected to large T-stresses. International Journal of Fracture 117(2), 159–174. 9. Chao YJ, Reuter WG (1997). Fracture of surface cracks under bending loads. In: Underwood JH, MacDonald B, Mitchell M(eds) Fatigue and fracture mechanics, vol 28,ASTMSTP 1321. American Society for Testing and Materials, Philadelphia, pp 214–242. 10. Sumpter, J.D.S (1993). An experimental investigation of the T stresses approach. Constraint effects in Fracture, ASTM STP 1171 (Edited by E. M. Hackett, K.-H. Schwalbe and R.H. Dodds), American Society for Testing and Materials, Philadelphia, 492-502. 11. Hancock, J.W, Reuter, W.G and Parks, D.M. (1993). Constraint and toughness parameterized by T. constraint effects in Fracture, ASTM STP 1171 (Edited by E.M. Hackett, K.-H. Schwalbe and R.H. Dodds), American Society for Testing and Materials, Philadelphia, 21-40. 12. Hadj Meliani M., Azari Z., Pluvinage G., Matvienko Y.G. (2011). The effective T-stress estimation and crack paths emanating from U-notches. Engineering Fracture Mechanics. 77(2010):1682–1692. 13. Hadj Meliani M., Azari Z., Pluvinage G. (2009).Constraint Parameter for a Longitudinal Surface Notch in a Pipe Submitted to Internal Pressure. Key Engineering Materials. Advances in Strength of Materials. Vol. 399 (2009) pp 3-11. 14. Hadj Meliani M., Benarous M., Moustabchir H., Harriri S., Azari Z. (2009).Three-dimensional T-stress to Predict the Directional Stability of Crack Propagation in a Pipeline with External Surface Crack. Springer Edition, Mars 2009. 15. Ayatollahi, M.R, Pavier, M.J, and Smith, D.J. (1998). Determination of T-stress from finite element analysis for mode I and mixed mode I/II loading. Int. J. of Fracture 91, 283-298. 16. Hadj Meliani M, Matvienko Yu.G, Pluvinage G (2011). Corrosion defect assessment on pipes using limit analysis and notch fracture mechanics. Engng Failure Analysis; 18: 271-283. 17. Meshii T., Tanaka T(2010). Experimental T33-stress formulation of test specimen thickness effect on fracture toughness in the transition temperature region. Engineering Fracture Mechanics 77 867–877.

RkJQdWJsaXNoZXIy MjM0NDE=