Damage Evaluation in Lithium Cobalt Oxide/Carbon Electrodes of Secondary Battery by Acoustic Emission Monitoring
- Authors
- Choe, Chan-Yang; Jung, Woo-Sang; Byeon, Jai-Won
- Issue Date
- 2015-02
- Publisher
- JAPAN INST METALS & MATERIALS
- Citation
- MATERIALS TRANSACTIONS, v.56, no.2, pp.269 - 273
- Abstract
- Acoustic Emission (AE) technique was employed for evaluating charge/discharge damage in a lithium-ion battery. A coin-type battery of lithium cobalt oxide/carbon electrodes was used for acoustic monitoring during accelerated charge/discharge cycle test. A number of AE signals were successfully detected during charge/discharge. Microstructural observation of the electrodes after the cycle test revealed mechanical damage such as micro-cracking of the cathode and chemical damage such as solid electrolyte interphase (SET) layer formed on the anode. The detected AE signals were classified into two distinct types (i.e., type 1 and type 2) based on the AE waveform parameters (i.e., duration and amplitude). The main frequency component of the type 1 signal with short duration and high amplitude was in the range of 121-160kHz, whereas the frequency of type 2 signals with long duration and low amplitude was between 81 and 120 kHz. Active AE source of type 1 and type 2 signal was attributed to micro-cracking in cathode and gas bubble accompanied by SET layer formation, on anode, respectively. These results demonstrate the feasibility of the AE technique for the evaluation of charge/discharge degradation of secondary battery.
- Keywords
- X-RAY-DIFFRACTION; ION BATTERIES; PITTING CORROSION; INTERCALATION; INTERFACE; TOOL; X-RAY-DIFFRACTION; ION BATTERIES; PITTING CORROSION; INTERCALATION; INTERFACE; TOOL; acoustic emission; lithium-ion battery; in-situ evaluation; degradation; micro-crack
- ISSN
- 1345-9678
- URI
- https://pubs.kist.re.kr/handle/201004/125824
- DOI
- 10.2320/matertrans.M2014396
- Appears in Collections:
- KIST Article > 2015
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