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首页> 外文期刊>Journal of Applied Polymer Science >Helium permeability of polymer materials as liners for composite overwrapped pressure vessels
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Helium permeability of polymer materials as liners for composite overwrapped pressure vessels

机译:高分子材料的氦气渗透性,用作复合包裹压力容器的衬里

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Polymers have been identified as replacement materials for metallic liners in composite overwrapped pressure vessels (COPVs) for future space launchers. PEEK, Nylon, and PVDF plastics formed from base powder grades have been permeability tested to determine their susceptibility to the diffusion of helium through flatwise panel cross sections. Permeability, diffusion, and solubility coefficients have been obtained for each material with PVDF and PA11 grades showing the lowest permeability coefficients and hence the best barrier properties to permeation. Crystallinity percentages and internal air void contents in the polymer samples have also been used to assess the differences in permeability between materials with an analysis of void dispersion effects given through X-ray CT scanning techniques. The measured permeability coefficients have been used to assess the ability of all materials tested to act as a functional polymer liner in a standard COPV with final leak rates predicted based on liner thicknesses and weights. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43675.
机译:聚合物已被确认为复合材料包裹压力容器(COPV)中金属衬里的替代材料,可用于未来的太空发射器。由基础粉末等级制成的PEEK,尼龙和PVDF塑料已经过渗透性测试,以确定它们对平板表面横截面中氦扩散的敏感性。对于PVDF和PA11级的每种材料,均获得了渗透性,扩散性和溶解性系数,显示出最低的渗透性系数,因此具有最佳的渗透阻隔性能。聚合物样品中的结晶度百分比和内部空隙含量也已用于通过X射线CT扫描技术给出的空隙分散效应分析来评估材料之间的渗透率差异。测得的渗透系数已用于评估所有测试材料在标准COPV中充当功能性聚合物衬里的能力,并根据衬里的厚度和重量预测最终泄漏率。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43675。

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