A tentative application of the energy separation principle to the determination of the fracture resistance (JIc) of rubbers

Author:

Agnelli S.,Baldi F.,Riccò T.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference23 articles.

1. Liu H, Lee RF, Donovan JA. Effect of carbon black on the J-integral and strain energy in the crack tip region in a vulcanized natural rubber. In: Proceedings of the meeting of the Rubber Division, American Chemical Society; 1987 May 26–29; Montreal, Quebec, Canada.

2. Evaluation of the Energy parameter J on rubber-like materials: comparison between experimental and numerical results;Hocine;Engng Fract Mech,1996

3. Investigation of mechanical and fracture mechanical properties of elastomers filled with precipitated silica and nanofillers based upon layered silicates;Reincke;Rubber Chem Technol,2004

4. Investigation of fracture resistance of natural rubber/clay nanocomposites by J-testing;Ramorino;Engng Fract Mech,2010

5. Abdelaziz MN, Ghfiri H, Mesmacque G, Neviere RG. The J integral as a fracture criterion of rubber-like materials: a comparative study between a compliance method and an energy separation method. In: Erdogan F, editor. Fracture mechanics, vol. 25.Philadelphia: ASTM STP 1220, American Society for Testing and Materials; 1995.

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