Effect of the electrode particle shape in Li-ion battery on the mechanical degradation during charge-discharge cycling

被引:21
|
作者
Vanimisetti, Sampath K.
Ramakrishnan, Narayanrao
机构
关键词
Li-ion battery materials; mechanical degradation; particle shape; intercalation stresses; strain energy; INTERCALATION-INDUCED STRESS; LITHIUM TRANSPORT; GENERATION; FRACTURE; CRACKING; DESIGN;
D O I
10.1177/0954406211432668
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The investigation addresses the effect of shape and aspect ratio, of typical electrode particles of Li-ion cell material, on the extent of fracture surface created due to intercalation-induced strain energy. Nodular, fibrous, and flaky-shaped particles were studied approximating them to sphere, cylinder, and disc geometries, respectively. Analytical expressions for stress distribution in slab and cylindrical-shaped particles were derived using thermal stress analogy. Such results are already available for spherical particles. Finite element study was carried out using COMSOL (R) Multiphysics package to complement the analytical work as well as for verification. The spatial and temporal variations of stresses and strain energy in the electrode particles of different shapes were established. Reportedly, solid electrolyte interphase formed on the fracture surface as well as the fracture-induced isolation of electrode material are the main causes of performance degradation and in this context, the intercalation-induced strain energy density becomes important. The sphericity of a particle, that is, the ratio of the surface area of a sphere to that of the particle of equal volume, was found to fittingly describe the effect of shape. The average strain energy density stored in a particle increases with the increasing sphericity. Therefore, fibrous and flaky-shaped particles are expected to have lower tendency for mechanical degradation than the nodular ones. The analysis is restricted only to the mechanics of mechanical degradation and not to the process or the chemistry point of view.
引用
收藏
页码:2192 / 2213
页数:22
相关论文
共 50 条
  • [21] Combining mechanical and chemical effects in the deformation and failure of a cylindrical electrode particle in a Li-ion battery
    Chakraborty, Jeevanjyoti
    Please, Colin P.
    Goriely, Alain
    Chapman, S. Jonathan
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2015, 54 : 66 - 81
  • [22] Li Metal Deposition during Low-Temperature Charge-Discharge Cycling of Li-Ion Batteries Observed by In Situ 7Li Nuclear Magnetic Resonance Spectroscopy
    Arai, J.
    Nakahigashi, R.
    SELECTED PROCEEDINGS FROM THE 231ST ECS MEETING, 2017, 77 (11): : 187 - 197
  • [23] Impact of Discharge Current Profiles on Li-ion Battery Pack Degradation
    Appelman, Maarten
    Venugopal, Prasanth
    Rietveld, Gert
    2022 IEEE 20TH INTERNATIONAL POWER ELECTRONICS AND MOTION CONTROL CONFERENCE, PEMC, 2022, : 474 - 480
  • [24] The effect of acetonitrile as an additive on the ionic conductivity of imidazolium-based ionic liquid electrolyte and charge-discharge capacity of its Li-ion battery
    Rofika, Rida Nurul Shelni
    Honggowiranto, Wagiyo
    Jodi, Heri
    Sudaryanto, Sudaryanto
    Kartini, Evvy
    Hidayat, Rahmat
    IONICS, 2019, 25 (08) : 3661 - 3671
  • [25] The effect of acetonitrile as an additive on the ionic conductivity of imidazolium-based ionic liquid electrolyte and charge-discharge capacity of its Li-ion battery
    Rida Nurul Shelni Rofika
    Wagiyo Honggowiranto
    Heri Jodi
    Sudaryanto Sudaryanto
    Evvy Kartini
    Rahmat Hidayat
    Ionics, 2019, 25 : 3661 - 3671
  • [26] Structural variation of Li2MnO3 during charge-discharge cycling
    Nakao, Yasuhiro
    Ozawa, Kiyoshi
    Nemoto, Yoshihiro
    Uesugi, Fumihiko
    Fujii, Hiroki
    Mochiku, Takashi
    JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2015, 123 (1439) : 589 - 594
  • [27] Charge-discharge mechanism and capacity degradation of Co-substituted Li5AlO4 during cycling
    Okuda, Daisuke
    Kobayashi, Hiroaki
    Ishikawa, Masashi
    MATERIALS CHEMISTRY AND PHYSICS, 2020, 255
  • [28] NMR evidence for the charge-discharge induced structural evolution in a Li-ion battery glass anode and its impact on the electrochemical performances
    Jiang, Zhenjing
    Zhao, Tongyao
    Ren, Jinjun
    Zhang, Yanfei
    Yue, Yuanzheng
    NANO ENERGY, 2021, 80 (80)
  • [29] Materials characterization and charge-discharge profile of LiNi1-xCoxO2 cathodic materials for Li-ion battery application
    Elong, Kelimah
    Rusdi, Roshidah
    Mokhtar, Nurul Atikah Mohd
    Azahidi, Azira
    Kamarulzaman, Norlida
    ADVANCEMENT OF MATERIALS AND NANOTECHNOLOGY II, 2012, 545 : 182 - +
  • [30] Heat Generation in Li-ion Cells during Charge and Discharge
    Srinivasan, Rengaswamy
    Carkhuff, Bliss G.
    Baisden, A. Carson
    Butler, Michael H.
    ENERGY HARVESTING AND STORAGE: MATERIALS, DEVICES, AND APPLICATIONS IV, 2013, 8728