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Investigation of the porous structure of battery separators using various porometric methods

机译:使用各种孔隙率法研究电池隔膜的多孔结构

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The aim of the investigation is to determine and compare the basic characteristics of the pores in battery separators using mercury porosimetry, which measures the volume of mercury penetrating into the pores, capillary flow pommetry, which measures the flow rate passing through the pores, and scanning electron microscopy. Two groups of separators are investigated: PVC and glass mat. Two types of each group are analysed: PVC-R and PVC-E supplied by different manufacturers; and AGM and MAGM (modified AGM-new product developed by LABD at IEES). It has been established that: the PVC-R and PVC-E separators have similar porous structures; the AGM separator and MAGM separator have different pore size distribution, as clearly evidenced by the flow porometry data: though the glass mat separators have greater total pore volume (respective porosity), the PVC separators are characterized by greater permeability, because the pores in their narrowest part have greater diameters than those for the glass mat separators. The two methods used, mercury porosimetry and capillary flow porometry, give information about different characteristics of the porous structure. A combination of both methods will provide a more detailed information about the porous structure of the separators and a clearer idea about the dynamics of the processes that take place in the lead-acid batteries, than the data supplied by each of the techniques used alone.
机译:该研究的目的是使用汞孔率法(用于测量渗透到孔中的汞的量),毛细管流量法(用于测量通过孔的流速)和扫描来确定和比较电池隔膜中孔的基本特征。电子显微镜。研究了两组隔板:PVC和玻璃毡。每组分析两种类型:不同制造商提供的PVC-R和PVC-E。 AGM和MAGM(LABD在IEES上开发的经过修改的AGM新产品)。已经确定:PVC-R和PVC-E隔板具有相似的多孔结构; AGM分离器和MAGM分离器具有不同的孔径分布,如通过流动性数据可以清楚地证明:尽管玻璃毡分离器具有更大的总孔体积(分别为孔隙率),但PVC分离器的特点是渗透性更大,因为它们中的孔最窄的部分的直径大于玻璃垫隔板的直径。所使用的两种方法,水银孔隙率法和毛细管流动孔隙率法,可提供有关多孔结构不同特征的信息。与单独使用每种技术提供的数据相比,两种方法的结合将提供有关隔板多孔结构的更详细信息,以及有关铅酸电池中发生的过程动力学的更清晰的想法。

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