The rubber ring is an essential component of high-pressure hydrogen storage systems. However, the fretting damage can lead to the seal failure of the rubber ring, which
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AI Customer ServiceRubber O-ring seals have been extensively used in high-pressure hydrogen storage systems for preventing gas leakage. It is important for the design of rubber O-ring
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AI Customer ServiceDOI: 10.1016/J.IJHYDENE.2017.03.039 Corpus ID: 99139876; Sealing performance analysis of rubber O-ring in high-pressure gaseous hydrogen based on finite
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When a spring or a rubber band is stretched, mechanical energy is stored in it. When the spring or the rubber band snaps back, this energy is released. This stored mechanical energy is called potential energy or elastic potential energy. It is a type of energy an object has because of its position.
Rubber O-ring seals have been commonly used in high-pressure hydrogen storage systems for preventing leakage of hydrogen gas , . However, the seal component is directly exposed to high-pressure gaseous hydrogen environment, and then the failure of rubber O-rings due to swelling induced by dissolved hydrogen may occur , .
Rubber O-ring seals have been extensively used in high-pressure hydrogen storage systems for preventing gas leakage. It is important for the design of rubber O-ring seals to clarify the sealing characteristics of the rubber O-ring under high-pressure gaseous hydrogen.
A finite element model for the rubber O-ring combined seal structure is developed. The wedge-ring with wedge angle of 45° is the most suitable in comparison to those of 30°and 60°. The combined seal structure can enhance the sealing capacity with increasing hydrogen pressure automatically.
In this paper, a finite element analysis (FEA) model in consideration of swelling due to dissolved hydrogen was developed to investigate the sealing characteristics of the rubber O-ring combined seal used for high-pressure hydrogen storage vessels.
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