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Effects of electrode properties and fabricated pressure on Li ion diffusion and diffusion-induced stresses in cylindrical Li-ion batteries

机译:电极性能和制造压力对圆柱形锂离子电池中Li离子扩散和扩散引起的应力的影响

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摘要

The effects of electrode properties and fabricated pressure on Li ion diffusion and diffusion-induced stress in a cylindrical Li-ion battery are studied. It is found that hydrostatic pressure or elastic modulus variation in the active layer have little effect on the distribution of Li ions for a higher diffusivity coefficient, but both can facilitate Li ion diffusion for a lower diffusivity coefficient. The elastic modulus variation has a significant effect on the distribution of stress and hydrostatic pressure can reduce the surface stress for the lower diffusivity coefficient. A higher charging rate causes a more transient response in the stress history, but a linear charging history is observed for slow charging rates. A higher charging rate would not inflict extra damage on the electrode for the higher diffusivity coefficient and the stress history becomes highly transient and charging rate dependent for the lower diffusivity coefficient. The effect of fabricated pressure can be neglected.
机译:研究了圆柱型锂离子电池中电极性能和制造压力对锂离子扩散和扩散引起的应力的影响。发现活性层中的静水压力或弹性模量变化对于较高的扩散系数对Li离子的分布影响很小,但是对于较低的扩散系数,两者都可以促进Li离子的扩散。弹性模量变化对应力的分布有显着影响,静水压力可以降低表面应力,从而降低扩散系数。较高的充电速率会在应力历史记录中引起更多的瞬态响应,但是对于缓慢的充电速率,则会观察到线性充电历史记录。对于较高的扩散系数,较高的充电速率不会对电极造成额外的损害,并且应力历程变得高度瞬态,并且对于较低的扩散系数,充电速率会受到影响。制造压力的影响可以忽略。

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