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首页> 外文期刊>Energies >Vibration Durability Testing of Nickel Manganese Cobalt Oxide (NMC) Lithium-Ion 18,650 Battery Cells
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Vibration Durability Testing of Nickel Manganese Cobalt Oxide (NMC) Lithium-Ion 18,650 Battery Cells

机译:镍锰钴酸锂(NMC)锂离子18,650电池单元的振动耐久性测试

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Electric vehicle (EV) manufacturers are employing cylindrical format cells in the construction of the vehicles’ battery systems. There is evidence to suggest that both the academic and industrial communities have evaluated cell degradation due to vibration and other forms of mechanical loading. The primary motivation is often the need to satisfy the minimum requirements for safety certification. However, there is limited research that quantifies the durability of the battery and in particular, how the cells will be affected by vibration that is representative of a typical automotive service life (e.g., 100,000 miles). This paper presents a study to determine the durability of commercially available 18,650 cells and quantifies both the electrical and mechanical vibration-induced degradation through measuring changes in cell capacity, impedance and natural frequency. The impact of the cell state of charge (SOC) and in-pack orientation is also evaluated. Experimental results are presented which clearly show that the performance of 18,650 cells can be affected by vibration profiles which are representative of a typical vehicle life. Consequently, it is recommended that EV manufacturers undertake vibration testing, as part of their technology selection and development activities to enhance the quality of EVs and to minimize the risk of in-service warranty claims.
机译:电动汽车(EV)制造商正在采用圆柱形电池来构建汽车的电池系统。有证据表明,学术界和工业界均已评估了由于振动和其他形式的机械负载导致的细胞降解。主要动机通常是需要满足安全认证的最低要求。但是,有限的研究量化了电池的耐用性,尤其是量化了代表典型汽车使用寿命(例如100,000英里)的振动如何影响电池。本文提出了一项研究,以确定商用18,650电池的耐久性,并通过测量电池容量,阻抗和固有频率的变化来量化电气和机械振动引起的退化。还评估了电池荷电状态(SOC)和包装内方向的影响。呈现的实验结果清楚地表明,代表典型车辆寿命的振动曲线会影响18,650个电池的性能。因此,建议电动汽车制造商进行振动测试,作为其技术选择和开发活动的一部分,以提高电动汽车的质量并最大程度地减少使用中保修索赔的风险。

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