Evaluation of the appropriate size of the finite element representative volume for filled rubber composite analyses

Author:

KADOWAKI Hiroshi1,HASHIMOTO Gaku2,OKUDA Hiroshi2,HIGUCHI Takeshi3,JINNAI Hiroshi3,SETA Eisuke1,SAGUCHI Takanari1

Affiliation:

1. Central Research Division, Bridgestone Corporation

2. Department of Human and Engineered Environmental Studies, The University of Tokyo

3. Institute of Multidisciplinary Research for Advanced Materials, Tohoku University

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference19 articles.

1. Akutagawa K., Yamaguchi K., Yamamoto A., Heguri H., Jinnai H., and Shinbori Y., Mesoscopic Mechanical Analysis of Filled Elastomer with 3D-Finite Element Analysis and Transmission Electron Microtomography, Rubber Chemistry and Technology, Vol. 81, No. 2 (2008), pp. 182-189.

2. Hashimoto G., and Okuda H., Large-scale one-way coupled analysis with open-source parallel FEM software FrontISTR , NAFEMS European Conference on Multiphysics Simulation 2014 (2014), pp. 31-33.

3. Hughes T. J. R., Generalization of selective integration procedures to anisotropic and nonlinear media, International Journal for Numerical Methods in Engineering, Vol. 15, Issue 9 (1980), pp 1413-1418.

4. Jinnai H., Shinbori Y., Kitaoka T., Akutagawa K., Mashita N., and Toshio Nishi, Three-Dimensional Structure of a Nanocomposite Material Consisting of Two Kinds of Nanofillers and Rubbery Matrix Studied by Transmission Electron Microtomography, Macromolecules, Vol. 40 (2007), pp. 6758-6764.

5. Jinnai H., Spontak R. J., and Nishi T., Transmission Electron Microtomography and Polymer Nanostructures, Macromolecules, Vol. 43 (2010), pp. 1675-1688.

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