Evaluation of critical fracture energy parameter Gfr and assessment of its transferrability

Author:

Acharyya S.,Dhar S.,Chattopadhyay J.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference16 articles.

1. Analysis of Cup cone fracture in a round tensile bar;Tvergaard;Acta Metall,1984

2. Ductile tearing simulation based on local energy criterion;Marie;Fatigue and Fracture of Engng Mat & Struc,1998

3. Acharyya S, Dhar S, Chattopadhyay J. The effect of non-crack component on Critical fracture energy on ductile material. Int J Pressure Vess Piping 2004; 81: 345–53.

4. Kanninen MF, Rybicki EF, Stonesifer RB, Broek D, Rosenfield ER, Marschall CW, et al. Elastic plastic fracture mechanics for two dimensional srtable crack growth and instability problems. Elastic-Plastic Fracture, ASTM STP, vol. 668; 1979; p. 121–50.

5. Turner CE. A reassessment of ductile tearing resistance, Part-I: the geometry dependence of J-R curves in fully plastic bending, Part-II Energy dissipation and associated R- curves on normalised axes. In: Fracture behaviour and design of materials and structures, 8th European conference on fracture vol. II, UK:Warley; 1990, p. 933–949, 951–968.

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