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Effects of different phase change material thermal management strategies on the cooling performance of the power lithium ion batteries: A review

机译:不同相变材料热管理策略对动力锂离子电池冷却性能的影响:综述

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摘要

The phase change material (PCM) based battery thermal management system (BTMS) is an effective cooling system for ensuring the reliability, safety, lifespan and performance of li-ion batteries. The kinds of PCM-based BTMS include the pure PCM, composite PCM and hybrid PCM-based BTMS. This work focuses on the review of the research progress in the PCM-based BTMS to propose its prospects and challenges. The research results show that most pure solid-liquid PCMs are of low thermal conductivity, which leads to large amounts of heat accumulation in a harsh operating environment. The addition of carbon materials and metals can significantly increase the thermal conductivity and the strength of the PCMs. The hybrid BTMS can further reduce the temperature rise and enhance the temperature uniformity of the battery compared with a single BTMS. Thus, the hybrid BTMS is more suitable to high power battery packs. This study provides a direction for future research, including screening new PCMs, improving the efficiency, reducing the energy consumption, volume and weight of the PCM-based BTMS.
机译:基于相变材料(PCM)的电池热管理系统(BTMS)是一种有效的冷却系统,可确保锂离子电池的可靠性,安全性,寿命和性能。基于PCM的BTMS包括纯PCM,复合PCM和基于混合PCM的BTMS。这项工作的重点是回顾基于PCM的BTMS的研究进展,以提出其前景和挑战。研究结果表明,大多数纯固液PCM的导热系数都较低,这导致在恶劣的工作环境中产生大量的热量。碳材料和金属的添加可以显着提高PCM的导热性和强度。与单个BTMS相比,混合BTMS可以进一步降低温度升高并增强电池的温度均匀性。因此,混合式BTMS更适合于高功率电池组。该研究为未来的研究提供了方向,包括筛选新的PCM,提高效率,减少基于PCM的BTMS的能耗,体积和重量。

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