Mechanism of Mechanics Evolution of Li-ion Battery Separator

Chen Jian, Xiao Xinyao, Zhang Xingyu, L. Tong, Xie Jingying, Wang Ke
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引用次数: 0

Abstract

For the problem of separator microstructure quantitative evolution under different loads, a simulation study based on images reconstruction is carried out. Aiming at the complex image structure problem of the amorphous fiber region of the SEM image, the binary processing and threshold segmentation methods were developed to efficiently identify and extract the pore phase and solid phase of the membrane. Based on the image finite element method, the simulations result of the evolution of the microstructures have found that the internal deformation of the separator shows the features of local stress concentration, local instability, and non-uniform mechanical characteristics. Microscopic information, such as porosity under different loads was quantitatively obtained. The characterization of separator microstructure evolution under different mechanical loads was also quantitatively analyzed in the modeling.
锂离子电池隔膜力学演化机理研究
针对不同载荷作用下分离器微观结构的定量演化问题,进行了基于图像重建的仿真研究。针对SEM图像中非晶态纤维区域复杂的图像结构问题,提出了二值化处理和阈值分割方法,有效地识别和提取膜的孔相和固相。基于图像有限元法的微观组织演化模拟结果表明,分离器内部变形表现出局部应力集中、局部失稳、力学特性不均匀等特点。定量获得了不同载荷下孔隙率等微观信息。在建模中还定量分析了不同力学载荷下分离器微观结构演变的表征。
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