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Permeability and effective pore radius measurements for heat pipe and fuel cell applications

机译:热管和燃料电池应用的渗透率和有效孔径半径测量

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摘要

Permeability and effective pore radius of sintered metal powder and carbon paper samples, with specific application to fuel cells and heat pipes, were measured using the rate-of-rise test. The performance of wicks in heat pipes is characterized by effective pore radius and permeability, while the permeability measurement by itself is useful for modeling in-plane phenomena of gas diffusion layers in fuel cells. The rate-of-rise measurement technique is characterized by its simplicity and non-intrusiveness, but previous results have been considered inaccurate. In this study, the amount of liquid in the samples was measured by sight for some samples but also by weight change for other samples, which is a new adaptation of the rate-of-rise test. Data is analyzed using an equation resulting from a simple model of the rising meniscus. Knowing the behavior of the equation is important when reducing data in order to obtain more accurate results. The methods used in experimentation and data reduction demonstrate the wider use and increased accuracy of the rate-of-rise test. (c) 2005 Elsevier Ltd. All rights reserved.
机译:使用上升率测试测量了烧结金属粉末和碳纸样品的渗透率和有效孔半径,这些样品特别应用于燃料电池和热管。热管中灯芯的性能以有效的孔半径和渗透率为特征,而渗透率测量本身可用于对燃料电池中气体扩散层的面内现象进行建模。上升速率测量技术的特点是其简单性和非侵入性,但以前的结果被认为是不准确的。在这项研究中,一些样品的外观是通过目测来测量的,而其他样品的是通过重量变化来测量的,这是对上升率测试的新调整。使用由上升弯月面的简单模型得出的方程式分析数据。减少数据以获得更准确的结果时,了解方程的行为很重要。实验和数据缩减中使用的方法证明了上升率测试的广泛使用和更高的准确性。 (c)2005 Elsevier Ltd.保留所有权利。

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