3D Cellular Automata Finite Element Method with Explicit Microstructure: Modeling Quasi-brittle Fracture using Meshfree Damage Propagation

Author:

Saucedo-Mora Luis,Marrow Thomas James

Publisher

Elsevier BV

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference5 articles.

1. Arroyo, M., Ortiz, M., 2006. Local maximum-entropy approximation schemes: a seamless bridge between finite elements and meshfree methods. International Journal for Numerical Methods 65, 2167-2202.

2. Saucedo Mora, L., 2012. Meshfree methods applied to tensile fracture and compressive damage in quasi-brittle materials. Ph. D. Thesis, University of Castilla-La Mancha, Spain.

3. Saucedo Mora, L., Marrow, T.J., 2013a. 3D cellular automata finite element method to model quasi-brittle fracture. Twelfth Intentional Conference on Engineering Structural Integrity Assessment Conference proceedings, (ESIA12), Manchester, UK.

4. Saucedo Mora, L., Mostafavi, M., Khoshkhou, D., Reinhard, C., Atwood, R., Zhao, S., Connolly, B., Marrow, T.J. 2013b. 3D cellular automata finite element (CAFE) modelling and experimental observation of damage in quasi-brittle nuclear materials: Indentation of a SiC-SiCfibre ceramic matrix composite. Third International Workshop on Structural Materials for Innovative Nuclear Systems (SMINS-3), October 2013, Idaho Falls, USA.

5. Shterenlikht, A., Howards, I.C., 2006. The CAFE model of fracture: application to a TMCR steel. Journal of Fatigue and Fracture of Engineering Materials and Structures 29, 770-787.

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