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TEAR RESISTANCE OF PROTON EXCHANGE MEMBRANES

机译:质子交换膜的抗撕裂性

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摘要

Through the thickness flaws or "pinholes" in proton exchange membranes (PEM) allow gas crossover that can lead to fuel cell failure. The formation of these flaws is not fully understood, but one possible mechanism is that small flaws could grow through crack propagation in the fracture mechanics sense. Although relatively brittle features are sometimes observed in failures resulting under simulated fuel cell conditions, the stress strain plots of the membranes themselves exhibit considerable ductility. In an effort to use fracture mechanics principles to characterize PEMs, fracture parameters associated with the essential work of fracture from double edge notch tensile (DENT) specimens; the tear energy obtained from the trouser tear test; and cutting energies associate with knife slitting were measured and compared. Presumably through reducing crack tip blunting, the knife slitting test is able to measure fracture energies as low as 200J/m~2, two orders of magnitude smaller than measured in the other tests. The results are sensitive to rate, temperature, and moisture level. Although the implications of these properties to fuel cell durability are not yet understood, they may have applicability in the more brittle features that are sometimes observed.
机译:穿过厚度的缺陷或质子交换膜(PEM)中的“针孔”会导致气体交叉,从而导致燃料电池故障。这些缺陷的形成尚不完全清楚,但一种可能的机制是,从断裂力学的角度来看,小缺陷可能会通过裂纹扩展而生长。尽管有时在模拟燃料电池条件下导致的故障中观察到相对较脆的特征,但膜本身的应力应变图却显示出相当大的延展性。为了使用断裂力学原理来表征PEM,断裂参数与双刃口拉伸(DENT)试样断裂的基本功有关。裤子撕裂试验获得的撕裂能量;测量和比较与切刀相关的切割能量。据估计,通过减少裂纹尖端的钝化,切刀测试能够测量低至200J / m〜2的断裂能,比其他测试小两个数量级。结果对速率,温度和水分含量敏感。尽管这些性质对燃料电池耐久性的影响尚不明确,但它们可能适用于有时观察到的更脆的特征。

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