WANG, H, ABBASIAN, T, JANANI, R, SKOF, M, ROBERT, C, Ó BRÁDAIGH, CM, SCENINI, F and SUSMEL, L (2026). Effect of long-term gaseous hydrogen exposure on the static and fatigue behaviour of T700/VTC401 unidirectional laminates. International Journal of Hydrogen Energy, 261: 156781. [Article]
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HE-D-26-03340_Accepted Manuscript.pdf - Accepted Version
Available under License Creative Commons Attribution.
HE-D-26-03340_Accepted Manuscript.pdf - Accepted Version
Available under License Creative Commons Attribution.
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Abstract
The long-term effects of gaseous hydrogen exposure on the mechanical performance of carbon-fibre-reinforced polymers (CFRPs) remain poorly understood. This study investigates the static and fatigue behaviour of T700/VTC401 [0]2S carbon-fibre-reinforced epoxy laminates after exposure to hydrogen at 6 bar and room temperature for 10 months. Static tensile tests showed no significant changes in elastic modulus or ultimate tensile strength. In contrast, tension–tension fatigue tests (R = 0.1, 10 Hz) revealed a reduction in fatigue resistance, with an approximately 10% decrease in the fatigue strength corresponding to 2∙106 cycles to failure and a flatter S–N response. Optical microscopy, Raman spectroscopy, and secondary electron microscopy did not identify hydrogen-specific damage features, suggesting that the observed fatigue degradation resulted from subtle changes in matrix and fibre–matrix interfacial behaviour. The results demonstrate that prolonged exposure to low-pressure gaseous hydrogen can reduce fatigue performance while leaving static tensile properties largely unaffected.
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