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Electric-controlled pressure relief valve for enhanced safety in liquid-cooled lithium-ion battery packs
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作者 Yuhang Song Jidong Hou +6 位作者 Nawei Lyu Xinyuan Luo Jingxuan Ma shuwen chen Peihao Wu Xin Jiang Yang Jin 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期98-109,I0004,共13页
The liquid-cooled battery energy sto rage system(LCBESS) has gained significant attention due to its superior thermal management capacity.However,liquid-cooled battery pack(LCBP) usually has a high sealing level above... The liquid-cooled battery energy sto rage system(LCBESS) has gained significant attention due to its superior thermal management capacity.However,liquid-cooled battery pack(LCBP) usually has a high sealing level above IP65,which can trap flammable and explosive gases from battery thermal runaway and cause explosions.This poses serious safety risks and challenges for LCBESS.In this study,we tested overcharged battery inside a commercial LCBP and found that the conventionally mechanical pressure relief valve(PRV) on the LCBP had a delayed response and low-pressure relief efficiency.A realistic 20-foot model of an energy storage cabin was constructed using the Flacs finite element simulation software.Comparative studies were conducted to evaluate the pressure relief efficiency and the influence on neighboring battery packs in case of internal explosions,considering different sizes and installation positions of the PRV.Here,a newly developed electric-controlled PRV integrated with battery fault detection is introduced,capable of starting within 50 ms of the battery safety valve opening.Furthermore,the PRV was integrated with the battery management system and changed the battery charging and discharging strategy after the PRV was opened.Experimental tests confirmed the efficacy of this method in preventing explosions.This paper addresses the safety concerns associated with LCBPs and proposes an effective solution for explosion relief. 展开更多
关键词 Pressure relief valve Liquid-cooled battery pack Explosion Flacs
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ABS/PBT合金两相形态及填料分布
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作者 唐磊 苏榆钧 +4 位作者 程书文 赖昂 付锦锋 杨霄云 叶南飚 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2020年第12期97-102,共6页
以丙烯腈-丁二烯-苯乙烯共聚物/聚对苯二甲酸丁二醇酯(ABS/PBT)合金为研究对象,尝试建立简单有效的合金相形态评价方法。通过对比不同刻蚀溶剂和刻蚀时间,确定了四氢呋喃(THF)处理5 min并经过超声振荡可以有效刻蚀合金中的ABS相。而80℃... 以丙烯腈-丁二烯-苯乙烯共聚物/聚对苯二甲酸丁二醇酯(ABS/PBT)合金为研究对象,尝试建立简单有效的合金相形态评价方法。通过对比不同刻蚀溶剂和刻蚀时间,确定了四氢呋喃(THF)处理5 min并经过超声振荡可以有效刻蚀合金中的ABS相。而80℃下30%g/mL的氢氧化钾(KOH)处理20~40 min则可以较好刻蚀合金中的PBT相。经过刻蚀处理的样品在扫描电镜下可以清晰地观察到合金中两相的形态。在此方法基础上进一步研究了合金的刻蚀方法和原子发射光谱等元素定量方法的结合,利用不同溶剂刻蚀不同组分并测定元素含量变化来评估填料在ABS/PBT合金各个相中的分布情况。结果表明,ABS/PBT/5%OMMT合金体系中有机蒙拓土(OMMT)在PBT相中的含量比ABS相中高出1.39倍,即填料更倾向于分布在PBT相中。上述方法为研究填料的选择性分布开发了一种简单便捷的表征方法,并且为研究多相体系中色粉和其他助剂等成分的选择性分布提供了一种思路和方向。 展开更多
关键词 丙烯腈-丁二烯-苯乙烯共聚物 聚对苯二甲酸丁二醇酯 蒙脱土 刻蚀 填料分布
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