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In-situ measurements of mechanical and volume change of LiCoO2 lithium-ion batteries during repeated charge-discharge cycling by using digital image correlation

机译:使用数字图像相关性在重复充电-放电循环过程中对LiCoO2锂离子电池的机械和体积变化进行原位测量

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In-situ morphological evolution of displacement in pouch-type commercial lithium-ion batteries during multiple fifty-five electrochemical charging-discharging cycles was measured via digital image correlation technique. The maximum principal strain on the battery surface reached 0.35% during 55 cycles. The whole volume change analysis of LIBs shows that the maximum volume change rate arrives at 4.27% at the fully 52nd charging end, and the maximum residual volume change rate is about 2.89% at the 54th discharging end. The surface morphologies of cathodes and anodes before and after electrochemical cycling were observed by scanning electron microscopy. The elastic modulus of the copper foil in LIBs decrease from as-received 16.7 GPa to 10.6 GPa after 55 cycles by using tensile tests. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过数字图像相关技术,测量了袋式商用锂离子电池在多个55次电化学充放电循环中的位移形貌。在55个循环中,电池表面的最大主应变达到0.35%。 LIB的整体体积变化分析表明,在完全充电的第52个充电端,最大体积变化率达到4.27%,而在第54个放电端,最大残留体积变化率约为2.89%。通过扫描电子显微镜观察在电化学循环之前和之后的阴极和阳极的表面形态。通过拉伸试验,在55个循环后,LIB中的铜箔的弹性模量从预期的16.7 GPa降低到10.6 GPa。 (C)2016 Elsevier Ltd.保留所有权利。

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