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A novel capacitive device for the study of volumetric expansion of hydride powders

机译:用于研究氢化物粉末体积膨胀的新型电容设备

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A new experimental device was developed to assist in the study of materials with potential for hydrogen storage with energy applications. Through measurements of electrical resistance and capacitance in AC, we can evaluate the alterations in porosity and volumetric expansion of very small amounts of material (similar to 0.1 g) as functions of hydrogen concentration. Observations of global sample resistivity permit the qualitative evaluation of changes of powder packing and grain mobility. To obtain the physical parameters of the materials, we propose an equivalent circuit with a complex impedance function developed from the internal geometry of the device. The circuit has been calibrated with three different conductive metallic alloys and tested successfully in the hydride of LaNi5 on samples free of stresses. We measured an increase of the volume expansion of the hydride bed on hydrogen cycling, evolving from below to above the crystallographic volume expansion. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:开发了一种新的实验设备,以协助研究在能源应用中具有储氢潜力的材料。通过测量交流电中的电阻和电容,我们可以评估极少量材料(类似于0.1 g)的孔隙率和体积膨胀随氢浓度的变化。对整体样品电阻率的观察可以对粉末堆积和颗粒迁移率的变化进行定性评估。为了获得材料的物理参数,我们提出了一种具有复杂阻抗函数的等效电路,该等效电路是由器件的内部几何形状开发的。该电路已经用三种不同的导电金属合金进行了校准,并在LaNi5的氢化物中成功地测试了无应力样品。我们测量了氢循环中氢化物床体积膨胀的增加,从晶体体积膨胀的下面到上面演变。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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