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The compression behavior, microstructure evolution and properties variation of three kinds of commercial battery separators under compression load

机译:三种商用电池隔膜在压缩载荷下的压缩行为,微观结构演变和性能变化

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In this article, the compression behavior, microstructure evolution and properties variation of three kinds of commercial polyolefin separator under compression load are systematically analyzed. The compression testing shows that three kinds of separators present two different deformation modes. The separator made from dry process by uniaxial stretching has good resistance to compression load due to the parallel lamellae aligned along thickness direction on cross-section. And all properties variation with stress display striking uniformities with compression curves. While the other two separators with biaxial stretching, both dry and wet process, have abundant multilayered structure, causing weaker resistance to compression load and flatter compression curves. And all properties show gentle trend for biaxial stretching separator. However, three kinds of separators also share some common characteristics. The separators compact violently along thickness direction under lower strain firstly, accompanied by the dramatic decline of porosity but slightly change connectivity along thickness direction. And subsequently the connectivity along thickness direction is severely destroyed at higher strain due to different reasons. The violent shear or glide of microporous structure occurs perpendicular to thickness direction for separator with uniaxial stretching and micropores direct blocking by non-corresponding micropores position between multilayered structure for separator with biaxial stretching.
机译:本文系统地分析了三种商用聚烯烃隔板在压缩载荷下的压缩行为,微观结构演变和性能变化。压缩测试表明,三种隔板表现出两种不同的变形模式。通过沿横截面的厚度方向排列的平行薄片,由干法通过单轴拉伸制成的隔膜具有良好的抗压缩负荷能力。应力引起的所有特性变化均显示出压缩曲线惊人的均匀性。而其他两个干式和湿式双轴拉伸隔膜均具有丰富的多层结构,从而降低了对压缩载荷的抵抗力和压缩曲线的平坦度。而且所有性能都显示出双轴拉伸隔膜的平缓趋势。但是,三种分隔符也具有一些共同的特征。隔板首先在较低的应变下沿厚度方向剧烈压缩,伴随着孔隙率的急剧下降,但沿厚度方向的连通性略有改变。然后,由于不同的原因,在较高的应变下沿厚度方向的连通性被严重破坏。对于单轴拉伸的隔板,微孔结构的剧烈剪切或滑移垂直于厚度方向发生,并且微孔结构通过双轴拉伸的隔板的多层结构之间的不对应的微孔位置而直接阻塞。

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