Liu Changcheng, Xu Dengji, Weng Jingwen, Zhou Shujia, Li Wenjuan, Wan Yongqing, Jiang Shuaijun, Zhou Dechuang, Wang Jian, Huang Que
School of Environment and Safety Engineering, North University of China, Taiyuan 030051, China.
College of Materials Science and Engineering, North University of China, Taiyuan 030051, China.
Materials (Basel). 2020 Oct 16;13(20):4622. doi: 10.3390/ma13204622.
The purpose of a battery thermal management system (BTMS) is to maintain the battery safety and efficient use as well as ensure the battery temperature is within the safe operating range. The traditional air-cooling-based BTMS not only needs extra power, but it could also not meet the demand of new lithium-ion battery (LIB) packs with high energy density, while liquid cooling BTMS requires complex devices to ensure the effect. Therefore, phase change materials (PCMs)-based BTMS is becoming the trend. By using PCMs to absorb heat, the temperature of a battery pack could be kept within the normal operating range for a long time without using any external power. PCMs could greatly improve the heat dissipation efficiency of BTMS by combining with fillers such as expanded graphite (EG) and metal foam for their high thermal conductivity or coordinating with fins. In addition, PCMs could also be applied in construction materials, solar thermal recovery, textiles and other fields. Herein, a comprehensive review of the PCMs applied in thermal storage devices, especially in BTMS, is provided. In this work, the literature concerning current issues have been reviewed and summarized, while the key challenges of PCM application have been pointed out. This review may bring new insights to the PCM application.
电池热管理系统(BTMS)的目的是维持电池的安全性和高效使用,同时确保电池温度在安全工作范围内。传统的基于空气冷却的BTMS不仅需要额外的电力,而且无法满足高能量密度新型锂离子电池(LIB)组的需求,而液体冷却BTMS则需要复杂的装置来确保效果。因此,基于相变材料(PCM)的BTMS正成为趋势。通过使用PCM吸收热量,电池组的温度可以在不使用任何外部电源的情况下长时间保持在正常工作范围内。PCM通过与具有高导热性的膨胀石墨(EG)和泡沫金属等填料结合或与散热片配合,可大大提高BTMS的散热效率。此外,PCM还可应用于建筑材料、太阳能热回收、纺织品等领域。在此,对应用于蓄热装置,特别是BTMS中的PCM进行全面综述。在这项工作中,对有关当前问题的文献进行了综述和总结,同时指出了PCM应用的关键挑战。本综述可能为PCM的应用带来新的见解。