본문 바로가기 사이드메뉴 바로가기 주메뉴 바로가기

GISTian

Students are the heart and soul of GIST

공지사항

[Mecha Seminar] 3:00PM, Mar. 22 (Tue.), Characterization and modeling of the dynamic electrochemical-thermal mechanics of Li-ion battery cells

  • 정지현
  • 등록일 : 2016.03.18
  • 조회수 : 3683

 

 

Abstract: The reliability and lifetime of Li-ion cells can be improved by understanding their operational wear. In this work, an experimental characterization of Li-ion cells is carried out, and novel phenomenological models are developed to elucidate the dynamic electrochemical-thermal mechanics of Li-ion cells. Two sources of swelling and reaction force, namely Li-ion intercalation and temperature variations, are identified through experiments. The swelling and force from temperature variation and the state of charge (SOC) shows nonlinear characteristics. To account for these behaviors, the model must include a coefficient of thermal expansion and stiffness at the cell-level, which depend on temperature and the SOC.

Based on the experimental characterization, a 1-D phenomenological multi-physics model is proposed to predict the complex dynamic behavior of Li-ion cells. The model consists of an electro-thermal model, a swelling model, and a force model. The electro-thermal model estimates the SOC and the surface/core temperature with current and ambient temperature profiles. The swelling model predicts the volume change of a cell due to Li-ion intercalation and temperature variation as a function of the SOC and surface/core/ambient temperature. The force model incorporates nonlinear elastic stiffness and separates the overall SOC region into three regions to account for Li-ion intercalation and phase transitions. The force model estimates the reaction force caused by the battery swelling and the preload as a function of the estimated SOC and total swelling. Experimental validation demonstrates that the proposed multi-physics model accurately predicts complex physics behind cells at the wide range of preload and ambient temperature.

A 3-D numerical and phenomenological cell model is developed also to predict strain and stress distribution on the surface of cells. To model the inherently different microphysical swelling processes from Li-ion intercalation and thermal expansion, the model incorporates the nonlinear equivalent modulus of elasticity and the equivalent coefficient of thermal expansion, which are functions of the SOC. Comparison between experiments and model predictions clearly demonstrates that this 3-D model accurately reproduce the swelling shape, suggesting that the model can be useful for cell design, developing new strain/pressure sensors, and optimizing sensor locations.

5626건 / 오늘 0
공지사항 - 번호, 제목, 작성자, 작성일, 조회수, 첨부파일 정보제공
번호 제목 작성자 작성일 조회수 첨부파일
2521 국방과학연구소 채용설명회 안내(03/17) 김미정 2017-03-10 3524 첨부파일 다운로드
2520 2017년 국방 기초연구 및 핵심기술 소요공모 설명회 신유진 2017-03-10 3049 첨부파일 다운로드
2519 (합동참모본부) 2017년 무기체계 시험평가 세미나 논문 모집(5.19.까지) 박재홍 2017-03-09 4793 첨부파일 다운로드
2518 온라인 직접구매시스템 안내 계약팀 2017-03-08 36653 첨부파일 다운로드
2517 [신소재공학부] LG전자-GIST 창의소재 공동연구센터 협약식(2017.03.10.금) 15:20 최미나 2017-03-07 4070
2516 2017학년도 1학기 과학기술과 경제 안내 김미림 2017-03-07 4460
2515 [생명과학부 Seminar] 2017.03.14.(Tue) 4PM /Dr. Luis F. Parada 이정민 2017-03-07 3936 첨부파일 다운로드
2514 [신소재공학부 Colloquim] 2017.3.9.(Thur.) 16:00~/ Prof. Park, Hyun Gyu (KAIST) 최미나 2017-03-07 3241
2513 [언어교육센터] 2017 봄학기 영어워크숍(1차): You are What you eat: Talking about food 정명하 2017-03-07 3062
2512 [언어교육센터] 2017 봄학기 영어 워크숍 일정 안내(수정) 정명하 2017-03-07 5597 첨부파일 다운로드
2511 [생명과학부 Seminar] 2017.03.10.(Fri) 1:30PM /Dr. Sewon Kim 이정민 2017-03-07 3802
2510 [생명과학부 Seminar] 2017.03.09.(Tue) 4PM /Dr. Peter Chang-Whan Lee 이정민 2017-03-07 3211 첨부파일 다운로드
2509 [GIST대학] 3/9(목) 전공세미나 / 서울대 이윤우 교수 김미애 2017-03-06 3502
2508 [화학과 Seminar] 03.09. (Thu.) 16:00 / Prof. Hyun Kyu Song (Korea University) 김은화 2017-03-06 4084 첨부파일 다운로드
2507 [언어교육센터] 2017 봄학기 언어 클리닉 오픈하우스(3/10, 금) 정명하 2017-03-06 3384