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BEHAVIOUR OF POLYMERS IN HIGH PRESSURE ENVIRONMENTS AS APPLICABLE TO THE HYDROGEN INFRASTRUCTURE

机译:适用于氢气基础设施的高压环境中聚合物的行为

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Polymeric materials have played a significant role in the adoption of a multi-materials approach towards the development of a safe and cost-effective solution for hydrogen fuel storage in Fuel Cell Vehicles (FCVs). Numerous studies exist with regards to the exposure of polymeric materials to gaseous hydrogen as applicable to the hydrogen infrastructure and related compression, storage, delivery, and dispensing operations of hydrogen at fueling stations. However, the behavior of these soft materials under high pressure hydrogen environments has not been well understood. This study involves exposure of select thermoplastic and elastomeric polymers to high pressure hydrogen (70-100 MPa) under static, isothermal, and isobaric conditions followed by characterization of physical properties and mechanical performance. Special attempt has been made to explain hydrogen effects on polymer properties in terms of polymer structure-property relationships, and also understand the influential role played by additives such as fillers, plasticizers, and processing aids in polymers exposed to hydrogen. Efforts have also been focused on deriving suitable conditions of static testing in high pressure hydrogen environments as a valuable part of developing a suitable test methodology for such systems. Understanding the relationships between polymer composition and microstructure, time of exposure, rate of depressurization, purge and exposure conditions, etc. in this simple study will help better define the test parameters for upcoming high pressure cycling experiments in hydrogen.
机译:聚合物材料在采用多种材料方法方面的发展中起着重要作用,从而为燃料电池汽车(FCV)中的氢燃料存储开发了一种安全且具有成本效益的解决方案。关于将聚合物材料暴露于气态氢方面存在许多研究,这些研究适用于氢基础设施以及在加油站进行的氢的相关压缩,储存,输送和分配操作。然而,这些软材料在高压氢环境下的行为还没有被很好地理解。这项研究涉及在静态,等温和等压条件下,将选定的热塑性和弹性体聚合物暴露于高压氢气(70-100 MPa)中,然后表征物理性能和机械性能。进行了特殊的尝试,以从聚合物的结构性质关系来解释氢对聚合物性能的影响,并且还了解了添加剂(例如填料,增塑剂和加工助剂)在暴露于氢的聚合物中所起的影响作用。作为开发适用于此类系统的合适测试方法的重要组成部分,工作也集中在推导高压氢气环境中合适的静态测试条件上。在这项简单的研究中,了解聚合物组成与微观结构,暴露时间,降压速率,吹扫和暴露条件等之间的关系将有助于更好地定义即将进行的氢气高压循环实验的测试参数。

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