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Development of Joining Methods for Highly Filled Graphite/PP Composite Based Bipolar Plates for Fuel Cells: Adhesive Joining and Welding

机译:基于高压石墨/ PP复合材料的加入方法的燃料电池双极板的研制:粘合剂连接和焊接

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Novel material solutions for bipolar plates in fuel cells require adapted ways of joining and sealing technologies. Safe and life time enduring leak-tight contacts must be achieved by automatic processes using reasonable joint forces. A proper sealing should manage such challenges as good ageing properties, excellent leak-tightness, high thermal conductivity and low gas permeability. Hence in this work, adhesive bonding and welding are considered as suitable methods, which can fulfill the requirements mentioned above. Adhesive systems seem to be more easy to apply than conventional sealing (hand layed-up rubber gaskets), e.g. with automatic dispensers. Additionally, the properties of an adhesive joint can be enhanced by a process-specific surface pre-treatment. This work focuses on the characterization of adhesive systems and their joints with highly filled graphite composites. Mechanical properties of the joints were characterized through lap-shear tests. The influence of ageing caused by humidity or acidic solvent at increased temperature on the bond line properties as well as neat adhesive was examined. The thermal conductivities of neat adhesives and through the entire joint were examined. In order to improve above conductivities, roughening, substrate pre-heating, post-curing and various contact pressure weights were applied. Plasma treatment was chosen as surface pre-treatment method for improving substrate's surface energy. An alternative to bonding is plastic welding, which does not require the use of sealants and adhesives. Based on former study of influences of filler content on the welding process using ultrasonic, hot plate or infrared welding, a welding method for joining the graphite compounds was derived.
机译:燃料电池双极板的新型材料溶液需要适当的方式连接和密封技术。必须通过使用合理的联合力来实现安全的安全和寿命持续的泄漏触点。适当的密封应管理良好的老化性能,优异的泄漏性,高导热性和低气体渗透性。因此,在这项工作中,粘合剂粘合和焊接被认为是合适的方法,其可以满足上述要求。粘合剂系统似乎比传统的密封(手铺设橡胶垫圈)更容易施加更容易涂抹(手工铺设橡胶垫圈)。用自动分配器。另外,可以通过方法特异性表面预处理来增强粘合接头的性质。这项工作侧重于具有高度填充的石墨复合材料的粘合系统及其关节的表征。接头的机械性能通过搭接剪切试验表征。检查湿度或酸性溶剂在粘合线特性的提高以及纯粘合剂上引起的衰老的影响。检查整齐粘合剂和通过整个接头的热导体。为了提高上述电导率,施加粗糙化,衬底预热,固化后和各种接触压力重量。选择等离子体处理作为用于改善基底表面能的表面预处理方法。粘合的替代方案是塑料焊接,这不需要使用密封剂和粘合剂。基于以前的前针对使用超声波,热板或红外焊接对焊接过程对焊接过程的影响的研究,推导了一种用于连接石墨化合物的焊接方法。

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