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Development of Fuel Cell Stack Durability based on Actual Vehicle Test Data: Current Status and Future Work

机译:基于实际车辆测试数据的燃料电池堆耐久性的开发:当前状态和未来工作

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Nissan began developing a fuel cell vehicle (FCV) in 1996 and has participated in fleet programs in the USA (CaFCP) and in Japan (JHFC) since 2001 to promote FCV development and to educate the public on the benefits of FCVs. The X-TRAIL FCV (latest model) is equipped with various new technologies, including a fuel cell stack that was engineered in-house. The X-TRAIL FCV has evolved from a test vehicle in 2002 to today's model, which provides the utility and conventional conveniences consumers would demand. The cruising range, acceleration performance and maximum speed are competitive with existing gasoline vehicles. However, to enable commercialization of FCVs, further improvements in performance and durability as well as reduction in costs will be necessary. Therefore, Nissan is investigating several different approaches for reducing cost and improving durability and performance. This paper describes the durability of the fuel cell stack on the X-TRAIL FCV. Stack durability was estimated from the results of durability tests conducted with power train test benches. Stack performance degradation is considered in terms of three factors--start-stop, load cycling and high potential (idling)--which might be the main causes of the performance decline. Each degradation ratio is discussed in detail. The accuracy of the stack life estimation is also described on the basis of a comparison of FCV test data obtained on public roads, including proving ground and durability test data. A new fuel cell stack is now being developed, aimed at achieving lower cost, higher performance and greater durability. The measures taken to improve the durability of the new stack are also described.
机译:日产于1996年开始开发燃料电池车(FCV),并于2001年以来参加了美国(CAFCP)和日本(JHFC)的舰队计划,以促进FCV发展,并教育公众对FCV的福利。 X-Trail FCV(最新型号)配备了各种新技术,包括在内部设计的燃料电池堆。 X-TRAIL FCV从2002年的测试车辆演变为今天的模型,为消费者提供了效用和传统的便利性。巡航范围,加速性能和最大速度与现有的汽油车辆具有竞争力。但是,为了实现FCV的商业化,将进一步提高性能和耐用性以及降低成本。因此,日产正在研究几种不同的方法,以降低成本和提高耐用性和性能。本文介绍了X-Train FCV燃料电池堆的耐久性。堆叠耐久性估计,耐久性试验结果估计了电力列车测试台的结果。堆栈性能下降在三个因素方面进行了考虑 - 起始停止,负载循环和高潜力(空转) - 这可能是性能下降的主要原因。详细讨论每个降解比率。还基于在公共道路上获得的FCV测试数据的比较来描述堆叠寿命估计的准确性,包括证明地和耐用测试数据。现在正在开发出一种新的燃料电池堆,旨在实现更低的成本,更高的性能和更高的耐用性。还描述了提高新堆栈的耐久性所采取的措施。

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