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首页> 外文期刊>International journal of hydrogen energy >700 bar type IV high pressure hydrogen storage vessel burst - Simulation and experimental validation
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700 bar type IV high pressure hydrogen storage vessel burst - Simulation and experimental validation

机译:700 bar IV型高压氢存储容器爆裂-仿真和实验验证

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摘要

The damage model described in [12,13] is used to predict the burst pressure and the burst mode of type IV hyperbaric tanks for hydrogen storage. The shape of the composite shell (as well as the fibre orientation at each point) ensuring the mechanical strength comes from the plug-in Wound Composite Modeler. The FE simulations are found not only to predict the global behaviour of the vessel (radial and axial displacement when undergoing an increasing inner pressure, burst pressure value), but also the damage modes at the ply scale. Thus, they are capable of explaining phenomena such as the non linearity due to the presence of a gap between the liner and the composite shell or the possible leaks due to delamination in the dome and providing the strain level in each composite layer. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在[12,13]中描述的损伤模型被用来预测用于储氢的IV型高压罐的爆破压力和爆破模式。复合材料外壳的形状(以及每个点的纤维方向)确保机械强度来自于插入式伤口复合材料建模器。发现有限元模拟不仅可以预测船舶的整体性能(当内部压力增加时,径向和轴向位移,爆裂压力值),而且可以预测层板尺寸的损伤模式。因此,它们能够解释诸如由于衬套和复合壳之间存在间隙而引起的非线性或由于穹顶中的分层导致的可能泄漏以及在每个复合层中提供应变水平之类的现象。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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