欢迎登录材料期刊网

材料期刊网

高级检索

介绍了电动汽车用锂离子电池材料的发展及制备,并结合产业化实践经验,综述了在电动汽车用锂离子电池一致性方面国内外研究现状;梳理出在该领域研发存在的不足和盲区,给出了后期应该加强研究和工程化改进的几个方向:在电池设计阶段,借助电池电化学模型确定各工序参数对一致性的影响程度,再确定其控制阈值;在电池制造阶段,提高生产过程中自动化水平和各工序之间的“节拍”衔接;在电池分选阶段,优化电池的筛选、分组工艺,考虑动态应用对一致性的影响;在电池组装阶段,考虑电池的摆放方式和摆放位置对一致性的影响;在电池使用阶段,通过电池系统的热、电管理措施,有效、及时地遏制使用过程中,特别是由于电池系统内温度分布造成的初始不一致性的恶化.

参考文献

[1] 麻友良,陈全世.混合动力电动汽车用蓄电池不一致的影响分析[J].汽车电器,2001(02):5-7,9.
[2] Jin-Long Liu;Jie Wang;Yong-Yao Xia .A new rechargeable lithium-ion battery with a xLi_2MnO_3·(1-x) LiMn_(0.4)Ni_(0.4)Co_(0.2)O_2 cathode and a hard carbon anode[J].Electrochimica Acta,2011(21):7392-7396.
[3] 刘元刚,唐致远,陈玉红,徐强.商品化石墨作为聚合物锂离子电池负极材料的性能表征[J].材料热处理学报,2007(02):17-21.
[4] Thorsten Baumhoefer;Manuel Bruehl;Susanne Rothgang;Dirk Uwe Sauer .Production caused variation in capacity aging trend and correlation to initial cell performance[J].Journal of Power Sources,2014(Feb.1):332-338.
[5] 徐玮 .基于单电池寿命模型的电池一致性研究[D].同济大学,2009.
[6] Chiu K;Lin C;Yeh S et al.Cycle life analysis of series connected lithium-ion batteries with temperature difference[J].Journal of Power Sources,2014,263:75-84.
[7] Radu Gogoana;Matthew B. Pinson;Martin Z. Bazant;Sanjay E. Sarma .Internal resistance matching for parallel-connected lithium-ion cells and impacts on battery pack cycle life[J].Journal of Power Sources,2014(Apr.15):8-13.
[8] 戴海峰,王楠,魏学哲,孙泽昌,王佳元.车用动力锂离子电池单体不一致性问题研究综述[J].汽车工程,2014(02):181-188,203.
[9] 张华辉,齐铂金,袁学庆,郑敏信.锂离子电池组合前后的特性研究[J].电池,2007(04):294-296.
[10] 王震坡,孙逢春,林程.不一致性对动力电池组使用寿命影响的分析[J].北京理工大学学报,2006(07):577-580.
[11] 谢皎,阮晓莉,李玉龙,胡蕴成.锂离子电池组的一致性及影响因素研究[J].东方电气评论,2012(03):1-5.
[12] Sebastian Paul;Christian Diegelmann;Herbert Kabza;Werner Tillmetz .Analysis of ageing inhomogeneities in lithium-ion battery systems[J].Journal of Power Sources,2013(Oct.1):642-650.
[13] 罗雨 .动力锂离子电池制备工艺对一致性影响研究[D].湖南大学,2012.
[14] H. Jannesari;M.D. Emami;C. Ziegler .Effect of electrolyte transport properties and variations in the morphological parameters on the variation of side reaction rate across the anode electrode and the aging of lithium ion batteries[J].JOURNAL OF POWER SOURCES,2011(22):9654-9664.
[15] Ben Kenney;Ken Darcovich;Dean D. MacNeil;Isobel J. Davidson .Modelling the impact of variations in electrode manufacturing on lithium-ion battery modules[J].Journal of Power Sources,2012(Sep.1):391-401.
[16] Santhanagopalan S;White R E .Quantifying cell-to-cell variations in lithium ion batteries[J].International Journal of Electrochemistry,2012,2012:1-10.
[17] Matthieu Dubarry;Nicolas Vuillaume;Bor Yann Liaw .Origins and accommodation of cell variations in Li-ion battery pack modeling[J].International journal of energy research,2010(2):216-231.
[18] Matthieu Dubarry;Nicolas Vuillaume;Bor Yann Liaw .From Single Cell Model To Battery Pack Simulation For Li-ion Batteries[J].Journal of Power Sources,2009(2):500-507.
[19] So Miyatake;Yoshihiko Susuki;Takashi Hikihara;Syuichi Itoh;Kenichi Tanaka .Discharge characteristics of multicell lithium-ion battery with nonuniform cells[J].Journal of Power Sources,2013(Nov.1):736-743.
[20] Zhang, J.;Ci, S.;Sharif, H.;Alahmad, M. .Modeling Discharge Behavior of Multicell Battery[J].IEEE Transactions on Energy Conversion,2010(4):1133-1141.
[21] Mao-Sung Wu;Chang-Yen Lin;Yung-Yun Wang;Chi-Chao Wan;C. R. Yang .Numerical simulation for the discharge behaviors of batteries in series and/or parallel-connected battery pack[J].Electrochimica Acta,2006(3):1349-1357.
[22] 王琳霞,王涌,郑荣鹏.锂离子电芯一致性对电池组影响的研究[J].电源技术,2012(09):1282-1284.
[23] 王佳元,孙泽昌,魏学哲,戴海峰.车用动力电池组全生命周期一致性[J].汽车安全与节能学报,2011(03):223-228.
[24] 王震坡,孙逢春,张承宁.电动汽车动力蓄电池组不一致性统计分析[J].电源技术,2003(05):438-441.
[25] 安富强,其鲁,王剑,张鼎,晨晖,毛永志,刘正耀.电动汽车用动力锂离子二次电池系统性能的研究[J].北京大学学报(自然科学版),2011(01):1-8.
[26] 刘英男 .基于多点频谱法的动力电池一致性研究[D].哈尔滨理工大学,2010.
[27] 李然,武俊峰,王海英,李革臣.基于多点频谱法的电池一致性分类研究[J].电源技术,2010(10):998-1001.
[28] 王永琛,倪江锋,王海波,高立军,胡道中,王子冬.锂离子电池一致性分选方法[J].储能科学与技术,2013(05):522-527.
[29] 单毅 .锂离子电池一致性研究[D].上海:中国科学院研究生院(上海微系统与信息技术研究所),2008.
[30] 王佳元,孙泽昌,魏学哲,戴海峰.电动汽车动力电池分选方法研究[J].电源技术,2012(01):94-98.
[31] Kobayashi Y;Kobayashi T;Shono K et al.Decrease in capacity in Mn-based/graphite commercial lithium-ion batteries:Ⅰ.Imbalance proof of electrode operation capacities by cell disassembly[J].Journal of the Electrochemical Society,2013,160(08):A1181-A1186.
[32] Kobayashi Y;Kobayashi T;Shono K et al.Decrease in capacity in Mn-based/graphite commercial lithium-ion batteries:Ⅱ.Nondestructive analysis by precise temperature measurement[J].Journal of the Electrochemical Society,2013,160(09):A1415-A1420.
[33] Y. Inui;Y. Kobayashi;Y. Watanabe;Y. Watase;Y. Kitamura .Simulation of temperature distribution in cylindrical and prismatic lithium ion secondary batteries[J].Energy Conversion & Management,2007(7):2103-2109.
[34] 李平,安富强,张剑波,王浩然.电动汽车用锂离子电池的温度敏感性研究综述[J].汽车安全与节能学报,2014(03):224-237.
[35] Sijie Zhang;Rui Zhao;Jie Liu;Junjie Gu .Investigation on a hydrogel based passive thermal management system for lithium ion batteries[J].Energy,2014(Apr.):854-861.
[36] Andrea D.Battery Management Systems for Large Lithium-Ion Battery Packs[M].Artech House,2010
[37] Yuejiu Zheng;Minggao Ouyang;Languang Lu;Jianqiu Li;Xuebing Han;Liangfei Xu .On-line equalization for lithium-ion battery packs based on charging cell voltages: Part 1. Equalization based on remaining charging capacity estimation[J].Journal of Power Sources,2014(Feb.1):676-686.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%