Parallel homogenization analysis of FW-CFRP for high-pressure hydrogen tanks considering fiber waviness
Author:
Affiliation:
1. Department of Engineering Mechanics and Energy, University of Tsukuba
2. Department of Mechanical Engineering, Nihon University
3. Department of Aeronautics and Astronautics, The University of Tokyo
4. R&D Division 2, Yachiyo Industry Co., Ltd.
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/mej/11/4/11_24-00013/_pdf
Reference23 articles.
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2. Breshears, C., The art of concurrency: A thread monkey’s guide to writing parallel applications. O’Reilly Media, Inc., (2009).
3. Harada, S., Arai, Y., Araki, W., Iijima, T., Kurosawa, A., Ohbuchi, T. and Sasaki, N., A simplified method for predicting burst pressure of type III filament-wound CFRP composite vessels considering the inhomogeneity of fiber packing, Composite Structures, Vol. 190 (2018), pp. 79-90.
4. Karypis, G. and Kumar, V., METIS: A software package for partitioning unstructured graphs, partitioning meshes, and computing fill-reducing orderings of sparse matrices (1997).
5. Kubo, G., Matsuda, T., Nagaoka, H. and Sato, Y., Development and Validation of Multiscale Thermo-elasto-viscoplastic Analysis Method for Plain-Woven Composites, Key Engineering Materials, Vol. 794 (2019), pp. 78-88.
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