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Polymer composites with graphene

Polymer composites with graphene
石墨烯聚合物复合材料
批准号:
571393-2021
负责人:
Hrymak, AndrewAN
金额:
$3.28万
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

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中文摘要
翻译
随着温室气体(GHG)排放对气候变化的影响越来越大,人们对内燃机替代品的兴趣也越来越大。电池电动汽车是一种路线,另一种是燃料电池。人们对聚合物复合材料越来越感兴趣,因为它不仅具有机械强度和重量轻,而且还具有其他性能,如导电性和导热性。这种聚合物复合材料的一个应用是质子膜燃料电池,特别是双极燃料电池板,它构成了当前燃料电池的很大一部分成本和重量。一种具有导电性的方法是在聚合物基体中加入碳填料——碳黑、碳纳米管、石墨纤维在过去都被使用过。石墨烯是最近进入市场的碳导电填料,因为它的二维层几何结构具有有趣的特性。然而,由于高成本和可用性,它的使用一直停滞不前。加拿大公司Hydrograph Clean Power Inc .开发了一种基于气溶胶的工艺,可以生产纯石墨烯,而无需从石墨到石墨烯加工路线通常需要的化学或机械加工。石墨烯的气溶胶凝胶形成提供了一些有趣的特性,本研究将对热固性树脂中的水图石墨烯进行研究,通过简单斑块几何形状的样品压缩成型,了解填充材料对机械、电气和热性能的影响。目标应用将是双极燃料电池板,这些产品需求将推动材料系统在石墨烯含量方面的设计,以及任何其他已被证明可以改善性能的碳填料的混合组合。这项研究的结果将为水图材料提供有价值的材料和产品设计信息,以帮助增加石墨烯的供应和使用,用于需要轻质和卓越的机械和能量性能的应用。这种先进材料系统的广泛使用将加速替代交通系统的发展,以减少温室气体的排放。
英文摘要
With the increasing effects of Green House Gas (GHG) emissions on climate change, there is also increasing interest to alternatives to internal combustion engines for mobility. Battery electric vehicles are one route, and another is fuel cells. There is increasing interest in polymer composites that are not only mechanically strong and lightweight, but also have other properties, such as electrical and thermal conductivity. An application for such polymer composites is in proton membrane fuel cells, and specifically the bipolar fuel cell plates which make up a significant amount of the cost and weight of current fuel cells. One means to have electrical conductivity is by the addition of carbon fillers to the polymer matrix - carbon black, carbon nanotubes, graphite fiber have all been used in the past. Graphene is a more recent entry into the market as a carbon conductive filler because of its interesting properties due to its two dimensional layer geometry. However, its use has been stalled because of high costs and availability. Hydrograph Clean Power Inc, a Canadian company, has developed an aerosol based process to create pure graphene without chemical or mechanical processing normally required from the graphite to graphene processing routes. The aerosol gel formation of graphene has provided some interesting properties and this research will undertake a study of the Hydrograph graphene in thermoset resins to understand the effect of the filler material on mechanical, electrical and thermal properties, through compression molding of samples in simple plaque geometries. The target application in mind will be bipolar fuel cell plates and those product requirements will drive the design of the material systems in terms of graphene content, as well as any other hybrid combinations of carbon fillers that have been shown to improve properties. The outcomes of this research will provide valuable material and product design information for the Hydrograph material to help increase the supply and use of graphene for applications that require lightweight and superior mechanical and energy properties. Broader use of such advanced material systems will accelerate the development of alternative systems for mobililty to reduce emissions of GHG.
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数值随机模型预测短纤加强泡沫或结构泡沫相对杨氏模量的研究
  • 批准号:
    50573095
  • 项目类别:
    面上项目
  • 资助金额:
    27.0万元
  • 批准年份:
    2005
  • 负责人:
    吴永
  • 依托单位: