PSI - Issue 2_B

Egor Moskvichev / Procedia Structural Integrity 2 (2016) 2512–2518 Author name / Structural Integrity Procedia 00 (2016) 000–000

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Acknowledgements

This work was supported by the Ministry of Education and Science of the Russian Federation according the agreement No. 14.607.21.0038 under the Federal Program “Research and development on priority directions of scientific-technological complex of Russia for 2014-2020”, project No. RFMEFI60714X0038. References Vasiliev, V., Krikanov, A., Razin, A., 2003. New generation of filament-wound composite pressure vessels for commercial applications. Composite Structures 62, 449–459. Wang, R., Jiao, W., Liu, W., Yang, F., 2010. A new method for predicting dome thickness of composite pressure vessels. Journal of Reinforced Plastics and Composites 29, 3345–3352. Hashin, Z., 1980. Failure criteria for unidirectional fiber composites. Journal of Applied Mechanics 47, 329–334. El-Sisi, A.E.-D.A., El-Emam, H.M., Salim, H.A., Sallam, H.E.-D.M., 2015. Efficient 3D modeling of damage in composite materials. Journal of Composite Materials 49, 817–828. Shih, C.F., Moran, B., Nakamura, T., 1986. Energy release rate along a three-dimensional crack front in a thermally stressed body. International Journal of Fracture 30, 79–102. Thionnet, A., Chou, H.Y., Bunsell, A., 2014. Fibre break processes in unidirectional composites. Composites: Part A 65. 148–160. Chou, H.Y., Mouritz, A.P., Bannister, M.K., Bunsell, A.R., 2015. Acoustic emission analysis of composite pressure vessels under constant and cyclic pressure. Composites: Part A 70, 111–120. Turner, C.E., 1981. The J-estimation curve, R-curve, and tearing resistance concepts leading to a proposal for a J-based design curve against fracture. Conference on the Fitness for Purpose Validation of Welded Construction. London, England, paper #17.

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