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首页> 外文期刊>Materials & design >Analysis of intermetallic swelling on the behavior of a hybrid solution for compressed hydrogen storage - Part II: Finite element method simulation
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Analysis of intermetallic swelling on the behavior of a hybrid solution for compressed hydrogen storage - Part II: Finite element method simulation

机译:金属间溶胀对压缩氢存储混合溶液行为的影响分析-第二部分:有限元方法模拟

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摘要

The second part of this article is dedicated to a Finites Elements Models (FEM) simulation of a hybrid vessel for hydrogen storage. This solution is made of a composite carbon/epoxy reinforcement coated on a metal liner first rolled up with an intermetallic material. The finite element method is a practical tool to study pressure vessel, especially when the local swelling of the intermetallic is introduced. In Part Ⅰ, we presented an analytical modeling that allows to predict the effect of the intermetallic swelling on the mechanical response of the liner but also of the composite, while an homogeneous leakage of hydrogen has occurred. Different sequences of the multilayer composite were investigated. In the first step of Part Ⅱ, a good agreement is obtained between the analytical results of Part Ⅰ and the numerical results of FEM for homogeneous before any swelling. The second step of Part Ⅱ is to focus on the local swelling of the intermetallic using a finite element analysis, assuming a local hydrogen leakage. Attention is paid on two different scenarios: After Isotropic Local Swelling (AILS) and an After Anisotropic Local Swelling (AALS). Results for both scenarios are then discussed.
机译:本文的第二部分专门研究用于储氢的混合容器的有限元模型(FEM)模拟。该解决方案由涂覆在金属衬里上的复合碳/环氧增强材料制成,该衬里先用金属间材料卷起来。有限元方法是研究压力容器的实用工具,尤其是当引入金属间化合物的局部溶胀时。在第一部分中,我们提出了一个分析模型,该模型可以预测金属间溶胀对衬套以及复合材料的机械响应的影响,同时发生了均匀的氢泄漏。研究了多层复合材料的不同顺序。在第二部分的第一步中,第一部分的分析结果与有限元数值模拟结果之间取得了很好的一致,然后才发生溶胀。第二部分的第二步是假设有限的氢泄漏,通过有限元分析关注金属间化合物的局部溶胀。需要注意两种不同的情况:各向同性局部膨胀之后(AILS)和各向异性局部膨胀之后(AALS)。然后讨论两种情况的结果。

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  • 来源
    《Materials & design》 |2012年第4期|p.459-469|共11页
  • 作者单位

    Institut FEMTO-ST, Dept Mec'Appli, 24, rue de l'epitaphe, 25000 Besancon, France;

    Institut FEMTO-ST, Dept Mec'Appli, 24, rue de l'epitaphe, 25000 Besancon, France ,University Hassiba Benbouali, BP. 157, Chief 02000, Algeria;

    Institut FEMTO-ST, Dept Mec'Appli, 24, rue de l'epitaphe, 25000 Besancon, France;

    Institut FEMTO-ST, Dept Mec'Appli, 24, rue de l'epitaphe, 25000 Besancon, France;

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