Mechanical Frequency Response Analysis of Lithium-Ion Batteries to Disclose Operational Parameters

被引:15
|
作者
Popp, Hartmut [1 ,2 ]
Glanz, Gregor [1 ]
Alten, Karoline [3 ]
Gocheva, Irina [1 ]
Berghold, Wernfried [1 ]
Bergmann, Alexander [2 ]
机构
[1] AIT, Ctr Low Emiss Transport, A-1210 Vienna, Austria
[2] Graz Univ Technol, Inst Elect Sensor Syst, A-8010 Graz, Austria
[3] AIT, Ctr Mobil Syst, A-1210 Vienna, Austria
基金
欧盟地平线“2020”;
关键词
lithium-ion battery; modal analysis; mechanical excitation; state of charge; state of health; temperature; CHARGE; VIBRATION; GRAPHITE; CELLS; DEPENDENCE; DYNAMICS; BEHAVIOR; CYCLES; STATE;
D O I
10.3390/en11030541
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
During the charge and discharge process, lithium-ion batteries change their mechanical properties due to internal structural changes caused by intercalation and de-intercalation of the ions in the anode and cathode. Furthermore, the behavior changes over the lifetime of the battery due to several degradation mechanisms. The mechanical properties of the cell hold valuable information for monitoring these changes and additionally provide data for mechanical construction and further optimization of battery systems. Hence, in this manuscript, the mechanical frequency response function is investigated as a non-destructive method to determine parameters such as stiffness and damping of pouch cells and their correlation with the state of charge (SOC), the state of health (SOH), and the temperature of the cell. Using a mechanical shaker and an impedance head, it is shown that low amplitude forces of only a few Newton and a low frequency region of several hundred Hertz already suffice to show differences in the state of charge and state of health as well as in mechanical properties and the dependencies on temperature. Also the limitations of the method are shown, as the frequency response is not distinct for each parameter and thus, at the moment, does not allow absolute determination of a single value without prior system knowledge.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Mechanical characterization and modeling for anodes and cathodes in lithium-ion batteries
    Wang, Lubing
    Yin, Sha
    Zhang, Chao
    Huan, Yong
    Xu, Jun
    JOURNAL OF POWER SOURCES, 2018, 392 : 265 - 273
  • [42] Thermo-mechanical Analysis of Lithium-ion Batteries with Variable Reversible Heat Source
    Suo, Yaohong
    Lai, Guanghui
    Lin, Mingju
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2022, 17 (08):
  • [43] Modeling state-of-charge dependent mechanical response of lithium-ion batteries with volume expansion
    Gilaki, Mehdi
    Sahraei, Elham
    ENERGY REPORTS, 2024, 12 : 3607 - 3619
  • [44] SAFER LITHIUM-ION BATTERIES
    Jacoby, Mitch
    CHEMICAL & ENGINEERING NEWS, 2013, 91 (06) : 33 - 37
  • [45] Safer lithium-ion batteries
    Canter, Neil
    TRIBOLOGY & LUBRICATION TECHNOLOGY, 2014, 70 (05) : 10 - 11
  • [46] Aging of lithium-ion batteries
    Sarre, G
    Blanchard, P
    Broussely, M
    JOURNAL OF POWER SOURCES, 2004, 127 (1-2) : 65 - 71
  • [47] Influence of operational condition on lithium plating for commercial lithium-ion batteries - Electrochemical experiments and post-mortem-analysis
    Ecker, Madeleine
    Sabet, Pouyan Shafiei
    Sauer, Dirk Uwe
    APPLIED ENERGY, 2017, 206 : 934 - 946
  • [48] State-of-Charge Dependence of Mechanical Response of Lithium-Ion Batteries: A Result of Internal Stress
    Li, Wei
    Xia, Yong
    Zhu, Juner
    Luo, Hailing
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2018, 165 (07) : A1537 - A1546
  • [49] Transparent lithium-ion batteries
    Yang, Yuan
    Jeong, Sangmoo
    Hu, Liangbing
    Wu, Hui
    Lee, Seok Woo
    Cui, Yi
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2011, 108 (32) : 13013 - 13018
  • [50] LITHIUM-ION BATTERIES The Basics
    Spotnitz, Robert
    CHEMICAL ENGINEERING PROGRESS, 2013, 109 (10) : 39 - 43