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Experimental thermal hazard investigation on carbonate electrolytes using a cone calorimeter

机译:使用锥形量热计对碳酸盐电解质的实验热危害研究

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During the thermal runaway (TR) processing of lithium-ion batteries (LIBs), electrolyte would release most of the heat as the main component. Thus, study on the firerisk of electrolyte is conductive to quantitatively evaluate the safety of LIBs. In this work, the combustion characteristics of three kinds of carbonate mixture electrolytes and the composition of residue were investigated. The signifcant parameters from the cone calorimeter tests re?ecting the thermal hazards such as heat release rate (HRR), mass loss rate (MLR) and open cup ?ash point were measured. The HRR curves at the radiant power of 15 and 25 kW/m2 were more gradual than those at 35 kW/m2 which had one or two apparent peaks. The addition of diethyl carbonate (DEC) increased the HRRs signifcantly. The applicability of thermal chemistry (TC) theory used to calculate HRR in previous works was studied. The results of TC technique had a disparity with those from the cone calorimeter called oxygen consumption (OC) calorimetry especially for the electrolyte containing DEC, which was proved by thermogravimetry-Fourier transform infrared spectroscopy (TG-FTIR) experimental results, while it is different from the conclusion reported in previous study. The constituent of carbonate electrolytes residue was analyzed by the X-ray Fluorescence (XRF). Element ?uorine (F) accounted for over 90% of the residue. The open cup ?ash point and ignition temperature were determined by the open cup ?ash point apparatus. The results showed that the firepoint was very close to the open cup ?ash point, and the difference was within 0.1 K.
机译:在锂离子电池(LIBS)的热失控(TR)加工期间,电解质将释放大部分热量作为主要成分。因此,对电解质的消防机构的研究是导向定量评估Libs的安全性的。在这项工作中,研究了三种碳酸盐混合物电解质的燃烧特性和残余物组合物。来自锥形量热计的显着性参数检测重新卷曲诸如热释放率(HRR),质量损失率(MLR)和开放式杯子的热危害。在15和25kW / m 2的辐射功率下的HRR曲线比35 kW / m2的辐射力曲线更渐进,具有一个或两个表观峰。加入碳酸二乙酯(DEC)显着增加了HRR。研究了用于在以前的作品中计算HRR的热化学(TC)理论的适用性。 TC技术的结果与来自称为氧气消耗量(OC)的锥形量热计的差异,特别是对于含DEC的电解质,通过热重率 - 傅立叶变换红外光谱(TG-FTIR)实验结果证明,而其不同结论从先前的研究报告。通过X射线荧光(XRF)分析碳酸盐电解质残留物的组成物。元素?uorine(f)占残留物的90%以上。开放式杯子射杯和点火温度由开放式杯子滤成灰点装置。结果表明,火光点非常靠近开放式杯子?灰点,差异在0.1k内。

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