Detection of Manufacturing Defects in Lithium-Ion Batteries-Analysis of the Potential of Computed Tomography Imaging

被引:3
作者
Evans, Daniel [1 ]
Luc, Paul-Martin [2 ]
Tebruegge, Claas [1 ]
Kowal, Julia [2 ]
机构
[1] HELLA GmbH & Co KGaA, Res Inst Automot Elect LAB, Beckumer Str 130, D-59555 Lippstadt, Germany
[2] Tech Univ Berlin, Dept Energy & Automat Technol, Elect Energy Storage Technol, Fac 4,Secr EMH 2, Einsteinufer 11, D-10587 Berlin, Germany
关键词
inhomogeneity; defect detection; computed tomography; lithium-ion batteries; laser scanning microscope; DEGRADATION; FAILURE; INHOMOGENEITIES; MECHANISM; CATHODE;
D O I
10.3390/en16196958
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
Realising an ideal lithium-ion battery (LIB) cell characterised by entirely homogeneous physical properties poses a significant, if not an impossible, challenge in LIB production. Even the slightest deviation in a process parameter in its production leads to inhomogeneities and causes a deviation in performance parameters of LIBs within the same batch. The greater the number and/or intensity of inhomogeneities, the more they need to be avoided. Severe inhomogeneities (defects), such as metal particle contamination, significantly impact the cell's performance. Besides electrical measurements, image-based measurement methods can be used to identify defects and, thus, ensure the production quality and safety of LIBs. While the applicability of computed tomography (CT) as an image-based measurement method for detecting defects has been proven, the limitations of this method still need to be determined. In this study, a systematic analysis of the capabilities of CT imaging was conducted. A multilayer pouch cell without an electrolyte was reassembled with several defects on one of the middle anodes. To investigate the boundaries of CT, defects such as a partial and complete removal of the coating, a cut, or a kink, as well as particle contaminations of various sizes and materials (aluminium, copper, iron) were chosen. By comparing the CT images of the cell using laser scanning microscope images of the defective anode, it could be proven that all selected defects except the kink were detectable.
引用
收藏
页数:17
相关论文
共 59 条
[31]   Effect of electrode manufacturing defects on electrochemical performance of lithium-ion batteries: Cognizance of the battery failure sources [J].
Mohanty, D. ;
Hockaday, E. ;
Li, J. ;
Hensley, D. K. ;
Daniel, C. ;
Wood, D. L., III .
JOURNAL OF POWER SOURCES, 2016, 312 :70-79
[32]   Non-destructive evaluation of slot-die-coated lithium secondary battery electrodes by in-line laser caliper and IR thermography methods [J].
Mohanty, Debasish ;
Li, Jianlin ;
Born, Rachael ;
Maxey, L. Curt ;
Dinwiddie, Ralph B. ;
Daniel, Claus ;
Wood, David L., III .
ANALYTICAL METHODS, 2014, 6 (03) :674-683
[33]   Quantitative Cell Classification Based on Calibrated Impedance Spectroscopy and Metrological Uncertainty [J].
Moradpour, Amin ;
Kasper, Manuel ;
Kienberger, Ferry .
BATTERIES & SUPERCAPS, 2023, 6 (05)
[34]   Inhomogeneous distribution of lithium and electrolyte in aged Li-ion cylindrical cells [J].
Muehlbauer, M. J. ;
Petz, D. ;
Baran, V ;
Dolotko, O. ;
Hofmann, M. ;
Kostecki, R. ;
Senyshyn, A. .
JOURNAL OF POWER SOURCES, 2020, 475 (475)
[35]   Detecting the foreign matter defect in lithium-ion batteries based on battery pilot manufacturing line data analyses [J].
Pan, Yue ;
Kong, Xiangdong ;
Yuan, Yuebo ;
Sun, Yukun ;
Han, Xuebing ;
Yang, Hongxin ;
Zhang, Jianbiao ;
Liu, Xiaoan ;
Gao, Panlong ;
Li, Yihui ;
Lu, Languang ;
Ouyang, Minggao .
ENERGY, 2023, 262
[36]   Degradation Mechanism of Ni-Enriched NCA Cathode for Lithium Batteries: Are Microcracks Really Critical? [J].
Park, Kang-Joon ;
Hwang, Jang-Yeon ;
Ryu, Hoon-Hee ;
Maglia, Filippo ;
Kim, Sung-Jin ;
Lamp, Peter ;
Yoon, Chong S. ;
Sun, Yang-Kook .
ACS ENERGY LETTERS, 2019, 4 (06) :1394-1400
[37]   Geometrical Inhomogeneities as Cause of Mechanical Failure in Commercial 18650 Lithium Ion Cells [J].
Pfrang, A. ;
Kersys, A. ;
Kriston, A. ;
Sauer, D. U. ;
Rahe, C. ;
Kaebitz, S. ;
Figgemeier, E. .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2019, 166 (15) :A3745-A3752
[38]   The role of structural defects in commercial lithium-ion batteries [J].
Qian, Guannan ;
Monaco, Federico ;
Meng, Dechao ;
Lee, Sang-Jun ;
Zan, Guibin ;
Li, Jizhou ;
Karpov, Dmitry ;
Gul, Sheraz ;
Vine, David ;
Stripe, Benjamin ;
Zhang, Jin ;
Lee, Jun-Sik ;
Ma, Zi-Feng ;
Yun, Wenbin ;
Pianetta, Piero ;
Yu, Xiqian ;
Li, Linsen ;
Cloeten, Peter ;
Liu, Yijin .
CELL REPORTS PHYSICAL SCIENCE, 2021, 2 (09)
[39]   Multiplexed 16 x 16 Li-Ion Cell Measurements Including Internal Resistance for Quality Inspection and Classification [J].
R-Smith, Nawfal Al-Zubaidi ;
Ragulskis, Mykolas ;
Kasper, Manuel ;
Wagner, Sascha ;
Pumsleitner, Johannes ;
Zollo, Bob ;
Groebmeyer, Albert ;
Kienberger, Ferry .
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2021, 70
[40]   A gradient screening approach for retired lithium-ion batteries based on X-ray computed tomography images [J].
Ran, Aihua ;
Chen, Shuxiao ;
Zhang, Siwei ;
Liu, Siyang ;
Zhou, Zihao ;
Nie, Pengbo ;
Qian, Kun ;
Fang, Lu ;
Zhao, Shi-Xi ;
Li, Baohua ;
Kang, Feiyu ;
Zhou, Xiang ;
Sun, Hongbin ;
Zhang, Xuan ;
Wei, Guodan .
RSC ADVANCES, 2020, 10 (32) :19117-19123