Fracture assessment based on unified constraint parameter for pressurized pipes with circumferential surface cracks

Author:

Mu M.Y.,Wang G.Z.,Xuan F.Z.,Tu S.T.

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference47 articles.

1. Dowling AR, Flewitt PEJ. In ‘The Development of Structural Integrity Assessment Methods: an Overview in Methods for the Assessment of Structural Integrity Components and Structure’. Lidbury D, Hirsh PB, editor. Maney, London; 2003. p. 1–26.

2. Constraint assessment of brittle fracture of steel components, ISO 27306 vs. FITNET FFS;Minami;Eng Fract Mech,2012

3. The prediction of constraint-dependent R6 failure assessment lines for a pressure vessel steel via micro-mechanical modelling of fracture;Burstow;Int J Press Ves Pip,2003

4. Brocks W, Schmitt W. The second parameter in J-R curves: constraint or triaxiality? In: Kirk M, Bakker A, editors. Constraint effects in fracture - theory and applications, vol. 2, ASTM STP 1244. American Society for Testing and Materials, West Conshohocken, PA; 1995. p. 209–31.

5. Influence of non-singular stress terms and specimen geometry on small-scale yielding at crack tips in elastic-plastic material;Larsson;J Mech Phys Solids,1973

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