Experimental–Numerical Characterization of the Fracture Behaviour of P264GH Steel Notched Pipes Subject to Internal Pressure

Author:

Moustabchir HassaneORCID,Zitouni Azari,Hariri Said,Gilgert J.,Pruncu C. I.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Computational Mechanics

Reference24 articles.

1. Adib H, Pluvinage G (2003) Theoretical and numerical aspects of the volumetric approach for fatigue life prediction in notched components. Int J Fatigue 25:67–76

2. Association française pour les règles de conception et de construction des matériels des chaudières électro-nucléaires (1993) RCC-MR, Règles de conception et de construction des matériels mécaniques des îlots nucléaires RNR: 2e modificatif, mai 1993 [à l'] éd. juin 1985, Règles de conception et de construction des centrales électro-nucléaires. AFCEN. ISSN:0763-2797

3. Barson JM, McNicol RC (1974) Effect of stress concentration on fatigue crack initiation in Hy-130 steel. ASTM STP 559:pp 183–204

4. Bermin FM (1983) Metall. Transaction 14A:2287–2296

5. Boukharouba T, Pluvinage G (1999) Prediction of semi-elliptical defect form, case of a pipe subjected to internal pressure. Nucl Eng Des 188(2):161–171

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1. Utilization of Quarter-Point Elements in Computation of Notch Stress Intensity Factors;Iranian Journal of Science and Technology, Transactions of Mechanical Engineering;2023-05-30

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4. Assessment of corroded API 5L X52 pipe elbow using a modified failure assessment diagram;International Journal of Pressure Vessels and Piping;2021-04

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