18650电池老化行为评价的可视化分析与阻抗分析

Yihan Shi, Qingrui Pan, Jitao Li, Xiaoze Shi, Youchang Wang, Peng Xiao
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引用次数: 0

摘要

本文对18650型锂离子电池的老化行为进行了全面的研究,重点研究了锂离子在快速充电过程中的不均匀插层。它介绍了一种新的方法,使用颜色视觉识别技术来分析石墨阳极的颜色变化,表明锂化程度。研究采用x射线衍射(XRD)和弛豫时间分布(DRT)技术对观测结果进行验证和分析。研究强调了电极阻抗、电池片位置、电解液分布对锂离子电池老化动力学的影响。此外,本文提出了一个创新的阻抗传输线模型,专门用于捕捉极化阻抗随时间的演变。该模型可以更深入地了解电池老化的内部机制,为锂离子电池的设计和优化提供有价值的见解。这项研究对该领域做出了重大贡献,揭示了锂离子电池复杂的老化过程,特别是在快速充电条件下。这可能会提高电池的性能、寿命和安全性,这对于依赖于这些储能系统的广泛应用至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Visualization Analysis and Impedance Analysis for the Aging Behavior Assessment of 18650 Cells

Visualization Analysis and Impedance Analysis for the Aging Behavior Assessment of 18650 Cells

This work presents a comprehensive study on the aging behavior of 18650-type lithium-ion batteries, focusing on the uneven intercalation of lithium ions during fast charging processes. It introduces a novel approach using color visual recognition technology to analyze color changes in the graphite anode, indicative of lithiation levels. The study employs X-ray diffraction (XRD) and distribution of relaxation time (DRT) techniques to validate and analyze the observations. The study emphasizes the significance of electrode impedance, the positioning of battery tabs, and electrolyte distribution in influencing the aging dynamics of lithium-ion batteries. Furthermore, the paper presents an innovative impedance Transport-Line Model, specifically developed to capture the evolution of polarization impedance over time. This model offers a deeper understanding of the internal mechanisms driving battery aging, providing valuable insights for the design and optimization of lithium-ion batteries. The research represents a significant contribution to the field, shedding light on the complex aging processes in lithium-ion batteries, particularly under the conditions of fast charging. This could lead to improved battery performance, longevity, and safety, which are critical for the wide range of applications that depend on these energy storage systems.

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