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A phase change material with enhanced thermal conductivity and secondary heat dissipation capability by introducing a binary thermal conductive skeleton for battery thermal management

机译:通过引入用于电池热管理的二元导热骨架,具有增强的导热性和二次散热能力的相变材料

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摘要

In order to enhance the thermal conductivity and secondary heat dissipation capability of the phase change material (PCM) in battery thermal management (BTM) applications, a new kind of composite PCM (CPCM) is successfully prepared by constructing a binary thermal conductive skeleton of expanded graphite (EG)/copper foam (CF). The EG with porous structure can adsorb the PCM of paraffin and act as a micro-thermal-conductive framework to transfer the heat to the adjacent CF skeleton. The CF acts as a macro-skeleton to transfer the heat throughout the CPCM plate and enhance the heat transfer coefficient of the interface between the CPCM plate and air. In consequence, the obtained CPCM-based battery pack with EG/CF (CPCM-EG/CF) delivers much better cooling and temperature-uniformed performances than those without EG/CF or CF, especially under a secondary heat dissipation system of forced air convection. For example, the CPCM-EG/CF pack shows stable and lowest maximum temperature and temperature difference of 48.0 and 3.9 degrees C during the cycling charge-discharge tests under forced air flow, respectively.
机译:为了提高电池热管理(BTM)应用中相变材料(PCM)的导热率和二次散热能力,通过构建扩展的二元导热骨架,成功地制备了一种新的复合PCM(CPCM)石墨(例如)/铜泡沫(CF)。例如具有多孔结构可以吸附石蜡的PCM并用作微导热框架,以将热量转移到相邻的CF骨架。 CF充当宏骨架,以在整个CPCM板上转移热量,并增强CPCM板和空气之间的界面的传热系数。结果,获得的基于CPCM的基于CPCM的电池组(CPCM-EG / CF)提供比没有EG / CF或CF的更好的冷却和温度均匀的性能,尤其是在强制空气对流的二次散热系统下。例如,CPCM-EG / CF包分别在强制空气流动下的循环充放电测试期间显示出稳定和最大的最高温度和48.0和3.9摄氏度的温度差。

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