Analysis of defects in the cylindrical area of a type-IV hydrogen pressure vessel on the mechanical laminate properties

Author:

Hopmann Christian,Müller Robert,Schneider Daniel,Fischer Kai

Publisher

AIP Publishing

Reference12 articles.

1. Klell, M., Eichlseder, H., Trattner, A.: Wasserstoff in der Fahrzeugtechnik (Springer, Wiesbaden, 2018)

2. Hua, T., Ahluwalia, R., Peng, J.-K., Kromer, M., Lasher, S., McKenney, K., Law, K., Sinha, J.: Technical Assessment of Compressed Hydrogen Storage Systems for Automotive Applications (U.S. Department of Energy, Oak Ridge, USA, 2010)

3. Vasiliev, V.: Composite pressure vessels: Analysis, design and manufacturing (Bull Ridge Corp., Blacksburg, USA, 2009)

4. Heinecke, F., van den Brink, W., Wille, T.: Assessing the structural response of automated fibre placement composite structures with gaps and overlaps by means of numerical approaches (Proceedings of the 20th International Conference on Composite Materials, Kopenhagen, Dänemark, 2015)

5. Lan, M., Cartié, D., Davies, P., Baley, C.: Influence of embedded gap and overlap fiber placement defects on the microstructure and shear and compression properties of carbon–epoxy laminates (Composites Part A: Applied Science and Manufacturing 82, 2016)

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