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Causes of binder damage in porous battery electrodes and strategies to prevent it

机译:多孔电池电极中粘结剂损坏的原因及预防措施

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摘要

The mechanisms for binder delamination from electrode particles in porous lithium-ion electrodes are considered. The problem is analysed using a model that makes use of a multiscale continuum description of the battery electrode and specifically accounts for the viscoelastic properties of the binder [9]. This model predicts the evolution of the stress fields in the binder in response to: (i) binder swelling due to electrolyte absorption during cell assembly, and; (ii) shrinkage and growth of the electrode particles during cell cycling. The model predictions provide a cogent explanation for morphological damage seen in microscopy images of real cathodes. The effects of altering electrode particle shape, binder rheology and cycling rates on binder delamination are all investigated and used to make suggestions on how electrode lifetimes could be extended.
机译:考虑了粘合剂从多孔锂离子电极中的电极颗粒脱层的机理。使用模型对问题进行了分析,该模型利用了电池电极的多尺度连续描述,并特别考虑了粘合剂的粘弹性[9]。该模型预测了响应于:(i)由于电池组装过程中电解质吸收引起的粘合剂膨胀,粘合剂中的应力场的演变;以及(ii)在细胞循环期间电极颗粒的收缩和生长。模型预测为真实阴极的显微镜图像中看到的形态损伤提供了有力的解释。研究了改变电极颗粒形状,粘合剂流变学和循环速率对粘合剂分层的影响,并就如何延长电极寿命提出了建议。

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