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Development of a small vehicular PEM fuel cell system

机译:小型车载PEM燃料电池系统的开发

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This paper reports the development of components in a stack assembly and measurements of electrochemical characteristics of a proton exchange membrane (PEM) fuel cell stack. A novel test fixture together with a superposition approach is utilized to assess the Ohmic resistance across the stack. Then, a Tafel-kinetic equation for describing the voltage and current curve for all processes including electrode activation, Ohmic resistance and mass transfer was reported. It was found that the Ohmic resistance inside the fuel cell stack was markedly impacted by clamping torque of the stack. An optimum clamping torque of 90 kgf cm was determined based on measured Ohmic resistance. Uniformity and stability in the stack was verified by measuring cell voltage and temperature distribution. Finally, stack durability was tested by impelling a buggy over a relatively long duration.
机译:本文报道了堆组件中组件的发展以及质子交换膜(PEM)燃料电池堆电化学特性的测量。一种新颖的测试夹具与叠加方法一起用于评估整个电池组的欧姆电阻。然后,报告了一个塔菲尔动力学方程式,用于描述包括电极活化,欧姆电阻和传质在内的所有过程的电压和电流曲线。已经发现,燃料电池堆内部的欧姆电阻受到电池堆的夹紧扭矩的显着影响。根据测得的欧姆电阻确定90 kgf cm的最佳夹紧扭矩。通过测量电池电压和温度分布来验证电池堆的均匀性和稳定性。最后,通过在相对较长的时间内推动越野车来测试堆栈的耐用性。

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