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锂离子电池滥用条件下的安全性研究 被引量:14

Study on safety performance of Li-ion power batteries under deviant use
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摘要 提高锂离子电池使用安全性是近年来的研究热点之一。通过对锂离子电池滥用条件下的安全性研究,分析了锂离子电池在过充、针刺、热冲击、挤压时电池的反应机理,研究了电池在发生起火、爆炸过程中内部的化学反应与变化,简述了目前采用的提高锂离子电池安全性的措施,并提出各种安全措施协同应用可能是未来改善电池安全性的有效手段。 Li-ion battery (LIB) has been considered as a preferred power source for electric vehicles due to its high energy density and high rate capability. However, the safety concern severely hinders the developments and applications of large capacity or high power LIBs in these fields. The safety performance of U-ion power batteries have been considered as one of hot researching in recent years. The recent progresses in this field were reviewed, including the reaction mechanism of U-ion battery in the condition of overcharge, nail puncture, heat concussion, and crush. The problems and further orientation in this research area were discussed after a brief introduction to their working mechanisms and research status. All kinds of methods cooperation with one another were summarized to improve safety performance of LIB.
出处 《电源技术》 CAS CSCD 北大核心 2013年第12期2235-2238,共4页 Chinese Journal of Power Sources
基金 国家高新技术研究("863")发展计划重大项目(2012AA11O102) 博士后面上基金项目(2012M510368)
关键词 锂离子电池 安全性 过充 针刺 包覆 lithium-ion battery safety overcharge nail puncture coating
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参考文献20

  • 1BALAKRISHNAN P G, RAMESH R, KUMAR T P. Safety mecha- nisms in lithium-ion batteries [J].J Power Sources,2006,155: 401- 414.
  • 2WANG Q S, PING P, ZHAO X J, et al. Thermal runaway caused fire and explosion of lithium ion battery[J]. J Power Sources, 2012, 208: 210-224.
  • 3VERMA P, MAIRE P, NOVAK P. A review of the features and analyses of the solid electrolyte interphase in Li-ion batteries [J]. Electrochimica Acta, 2010, 55: 6332-6341.
  • 4夏兰,李素丽,艾新平,等.锂离子电池的安全性技术[J].化学逆展,2011.23:328-336.
  • 5JHU C Y, WANG Y W, SHU C M, et al. Thermal explosion hazards on 18650 lithium ion batteries with a VSP2 adiabatic calorimeter[J].Journal of Hazardous Materials, 2011, 192: 99-107.
  • 6WANG F M, WU H C, CHENG C S, et al. High ionic transfer of a hyperbranched-network gel copolymer electrolyte for potential elec- tric vehicle (EV) application[J]. Electrochimica Acta, 2009, 54: 3788-3793.
  • 7FENG X M, AI X P, YANG H X.A positive-temperature-coefficient electrode with thermal cut-off mechanism for use in reehargeable lithium batteries[J].Electrochemistry Communications,2004,6: 1021- 1024.
  • 8OHSAKI T, KISHI T, KUBOKI T, et al.Overcharge reaction of lith- ium-ion batteries[J]. J Power Sources, 2005, 146: 97-100.
  • 9LEISING R A, PALAZZO M J, TAKEUCHI E S, et al. A study of the overcharge reaction of lithium-ion batteries[J]. J Power Sources, 2001, 97/98: 681-683.
  • 10杨娟玉,卢世刚,刘莎,庞静.混合电动汽车用锂离子电池的研究[J].电池,2007,37(2):104-106. 被引量:11

二级参考文献30

  • 1吴宁宁,雷向利,徐华,徐金龙,杨永伟.锰酸锂动力电池体系研究[J].北京大学学报(自然科学版),2006,42(S1):67-71. 被引量:7
  • 2庞静,卢世刚,杜纪磊,张刚,刘人敏,陈晓红.混合电动汽车用高功率型锂离子电池[J].电池,2004,34(3):159-160. 被引量:8
  • 3LUO J Y, LI X L, XIA Y Y. Synthesis of highly crystalline spinel LiMn2O4 by a soft chemical route and its electrochemical performance [J]. Electrochimica Acta, 2007, 52(25):4525-4531.
  • 4PASQUIER A D, DISMA F, BOWMER T, et al. Differential scan- ning calorimetry study of the reactivity of carbon anodes in plastic li-ion batteries[J]. J Electrochem Soc, 1998, 145(2): 472-477.
  • 5BIENSAN P, SIMON B, PERES J P, et al. On safety of lithium-ion cells[J]. J Power Sources, 1999,81-82: 906-912.
  • 6KAWAMURA T, KIMURA A, EGASHIRA M, et al. Thermal sta- bility of alkyl carbonate mixed-solvent electrolytes for lithium ion cells[J]. J Power Sources, 2002, 104(2): 260-264.
  • 7MACNEIL D D, DAHN J R. The reaction of charged cathodes with nonaqueous solvents and ELECTROLYTES II [J]. J Electrochem Soc, 2001,148(11): 1211-1215.
  • 8安标国家矿用产品安全标志中心.矿灯用锂离子蓄电池安全性能检验规范[S].北京:安标国家矿用产品安全标志中心,2007.
  • 9RICHARD M N, DAHN J R. Accelerating rate calorimetry study on thermal stability of lithium intercalated graphite in electrolyte: I experimental[J]. J Electrochem Soc, 1999, 146(6): 2068-2077.
  • 10TAKAHISA O, TAKASHI K, TAKAMI N, et al. Overcharge reaction of lithium-ion batteries[J]. J Power Sources, 2005,146(1) 97- 100.

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