Directionality and Orientation Effects on the Resistance to Propagating Shear Failure

Author:

Leis B N,Barbaro F J,Gray J M

Publisher

Springer International Publishing

Reference23 articles.

1. Maxey, W. A., “Fracture Initiation, Propagation, and Arrest,” Paper J, 5th Symposium on Line Pipe Research, PRCI Catalog No. L30174, November 1974.

2. Poynton, W. A., “A Theoretical Analysis of Shear Fracture Propagation in Backfilled Gas Pipelines,” Symposium on Crack Propagation in Pipelines, The Institute of Gas Engineers, Newcastle Upon Tyne, England, March 1974.

3. Leis, B.N, Eiber, R.J., Carlson, L, and Gilroy-Scott, A., Relationship Between Apparent CharpyVee-Notch Toughness and the Corresponding Dynamic Crack-Propagation Resistance, 1998 Int. Pipeline Conference, Volume II, ASME Calgary, 1998, pp. 723–731.

4. Wilkowski, G. M., Maxey, W. A., and Eiber, R. J., “Use of the DWTT Energy for Predicting Ductile Fracture Behavior In Control-Rolled Steel Line Pipes,” Can Met Quart, Vol 19, pp. 59–77, 1978.

5. Makino, H., Takeuchi, I., and Higuchi, R., “Fracture Propagation and Arrest in High Pressure Gas Transmission Pipeline by Ultra High Strength Line Pipes,” Paper IPC2008–64078, 7th International Pipeline Conference, September 2008.

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