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Preparation of Binary Thermal Silicone Grease and Its Application in Battery Thermal Management

机译:二元热硅氧烷润滑脂制备及其在电池热管理中的应用

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摘要

To improve the problems of large interface thermal resistance and low heat dissipation efficiency in battery thermal management (BTM), this paper uses methyl silicone oil as the matrix, AIN, copper powder (CP), and carbon fiber (CF) as thermally conductive fillers, and acetone and stearic acid as particle surface modification components. A variety of binary thermal silicone greases (TSGs) with different compositions were prepared. Different instruments were used to test the material properties of TSGs, and a better TSG was selected to coat the interface between battery and phase change material (PCM) for battery charging and discharging experiments. Through the analysis of experimental data, it was found that among the TSGs made of three mixed fillers (AIN/CP, AIN/CF, CP/CF), the three TSGs had good thermal stability, and their thermal degradation temperature both exceeded 300 °C. As the ratio of thermally conductive filler was gradually changed from 5:1 to 1:5, the TSG containing CP/CF had higher thermal conductivity and lower volume resistivity, while the TSG containing AIN/CF had the least damage due to interface wear. The acidification treatment of thermally conductive filler can improve the adsorption and compatibility of thermally conductive particles and silicone oil, and reduce the oil separation rate of TSGs. The prepared expanded graphite (EG)/paraffin wax (PW) composite phase change material (CPCM) has a relatively large latent heat of phase change, which can effectively control the temperature of the battery, but coating TSG between the battery and the CPCM can further enhance the heat dissipation effect of the battery.
机译:为了提高电池热管理(BTM)中大界面热阻和低散热效率的问题,本文采用甲基硅油作为基质,AIN,铜粉(CP)和碳纤维(CF)作为导热填料和丙酮和硬脂酸作为颗粒表面改性组分。制备各种具有不同组成的二元热硅氧烷润滑脂(TSG)。使用不同的仪器来测试TSG的材料特性,并选择更好的TSG以涂覆电池和相变材料(PCM)之间的界面,用于电池充电和放电实验。通过对实验数据的分析,发现在三种混合填料(AIN / CP,AIN / CF,CP / CF)中的TSG中,三个TSG具有良好的热稳定性,其热降解温度都超过300° C。随着导热填料的比例从5:1至1:5逐渐变化,含有CP / CF的TSG具有较高的导热性和更低的体积电阻率,而含有AIN / CF的TSG由于界面磨损而损坏最小。导热填料的酸化处理可以改善导热颗粒和硅油的吸附和相容性,并降低TSG的油分离速率。制备的膨胀石墨(例如)/石蜡蜡(PW)复合相变材料(CPCM)具有相变的相变的相对大的潜热,可以有效地控制电池的温度,但电池之间的涂层和CPCM可以涂布TSG进一步提高电池的散热效果。

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