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Measurement of the through thickness compression of a battery separator

机译:测量电池隔板的通孔厚度压缩

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The mechanical integrity of the separator is critical to the reliable operation of a battery. Due to its minimal thickness, compression experiments with a single/a few layers of separator are difficult to perform. In this work, a capacitance based displacement set-up has been developed for the measurement of the through thickness direction (TTD) compression stress-strain behavior of the separator and the investigation of its interaction with the electrode. The experiments were performed for a stack of two layers of Celgard 2400 separator, NMC cathode, and separator/NMC cathode/separator stack in both dry and wet (i.e. submersed in dimethyl carbonate DMC) conditions. The experimental results reveal that the separator compression modulus can be significantly affected by the presence of DMC. The iso-stress based rule of mixtures was used to compute the compressive stress-strain curve for the stack from that of the separator and NMC layer. The computed curve agreed with the experimental curve reasonably well up to about 0.16 strain but deviated significantly to a softer response at higher strains. The results suggest that, in the stack, the TTD compressive deformation of the separator is influenced by the NMC cathode.
机译:隔板的机械完整性对于电池的可靠运行至关重要。由于其最小的厚度,使用单层/几层隔板进行压缩实验非常困难。在这项工作中,已经开发了基于电容的位移设置,用于测量隔板的厚度方向(TTD)压缩应力-应变行为并研究其与电极的相互作用。在干和湿(即,浸入碳酸二甲酯DMC)条件下,对两层Celgard 2400隔板,NMC阴极和隔板/ NMC阴极/隔板堆叠进行堆叠实验。实验结果表明,DMC的存在会明显影响分离器的压缩模量。基于混合物的等应力定律,用于根据隔板和NMC层的压力计算叠层的压应力-应变曲线。所计算的曲线与实验曲线相当吻合,直至约0.16应变,但在较高应变下明显偏离较软的响应。结果表明,在叠层中,隔板的TTD压缩变形受NMC阴极的影响。

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