Search Results - "Feng, Xuning"

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  1. 1

    State-of-health monitoring of lithium-ion battery modules and packs via incremental capacity peak tracking by Weng, Caihao, Feng, Xuning, Sun, Jing, Peng, Huei

    Published in Applied energy (15-10-2016)
    “…•A new framework based on ICA is used to monitor SOH on-board for battery packs.•The applicability of the framework is validated through simulation and…”
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    Journal Article
  2. 2

    Probing the heat sources during thermal runaway process by thermal analysis of different battery chemistries by Zheng, Siqi, Wang, Li, Feng, Xuning, He, Xiangming

    Published in Journal of power sources (28-02-2018)
    “…Safety issue is very important for the lithium ion battery used in electric vehicle or other applications. This paper probes the heat sources in the thermal…”
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  3. 3

    A 3D thermal runaway propagation model for a large format lithium ion battery module by Feng, Xuning, Lu, Languang, Ouyang, Minggao, Li, Jiangqiu, He, Xiangming

    Published in Energy (Oxford) (15-11-2016)
    “…In this paper, a 3D thermal runaway (TR) propagation model is built for a large format lithium ion battery module. The 3D TR propagation model is built based…”
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  4. 4

    Characterization of penetration induced thermal runaway propagation process within a large format lithium ion battery module by Feng, Xuning, Sun, Jing, Ouyang, Minggao, Wang, Fang, He, Xiangming, Lu, Languang, Peng, Huei

    Published in Journal of power sources (01-02-2015)
    “…This paper investigates the mechanisms of penetration induced thermal runaway (TR) propagation process within a large format lithium ion battery pack. A…”
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  5. 5

    Thermal runaway features of large format prismatic lithium ion battery using extended volume accelerating rate calorimetry by Feng, Xuning, Fang, Mou, He, Xiangming, Ouyang, Minggao, Lu, Languang, Wang, Hao, Zhang, Mingxuan

    Published in Journal of power sources (01-06-2014)
    “…In this paper, the thermal runaway features of a 25 Ah large format prismatic lithium ion battery with Li(NixCoyMnz)O2 (NCM) cathode are evaluated using the…”
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  6. 6

    Comparative study on substitute triggering approaches for internal short circuit in lithium-ion batteries by Liu, Lishuo, Feng, Xuning, Zhang, Mingxuan, Lu, Languang, Han, Xuebing, He, Xiangming, Ouyang, Minggao

    Published in Applied energy (01-02-2020)
    “…•5 substitute triggering approaches for internal short circuit are introduced.•Thermal-electrical coupling features of internal short circuit are…”
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  7. 7

    Questions and Answers Relating to Lithium-Ion Battery Safety Issues by Huang, Wensheng, Feng, Xuning, Han, Xuebing, Zhang, Weifeng, Jiang, Fachao

    Published in Cell reports physical science (20-01-2021)
    “…Fire accidents involving electric vehicles can raise questions regarding the safety of lithium-ion batteries. This article aims to answer some common questions…”
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  8. 8

    Detecting the internal short circuit in large-format lithium-ion battery using model-based fault-diagnosis algorithm by Feng, Xuning, Pan, Yue, He, Xiangming, Wang, Li, Ouyang, Minggao

    Published in Journal of energy storage (01-08-2018)
    “…•Model-based fault diagnosis algorithm detects internal short circuit of battery.•The algorithm only relies on commonly used signal of voltage and…”
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  9. 9

    Thermal runaway of Lithium-ion batteries employing LiN(SO2F)2-based concentrated electrolytes by Hou, Junxian, Lu, Languang, Wang, Li, Ohma, Atsushi, Ren, Dongsheng, Feng, Xuning, Li, Yan, Li, Yalun, Ootani, Issei, Han, Xuebing, Ren, Weining, He, Xiangming, Nitta, Yoshiaki, Ouyang, Minggao

    Published in Nature communications (09-10-2020)
    “…Concentrated electrolytes usually demonstrate good electrochemical performance and thermal stability, and are also supposed to be promising when it comes to…”
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  10. 10

    Temperature-responsive microcapsules alleviating the hazards of thermal runaway for lithium-ion batteries by Tong, Jingjing, Peng, Yong, Liu, Jie, Wang, Li, Hou, Bowen, Feng, Xuning, Ouyang, Minggao

    Published in Applied physics letters (08-07-2024)
    “…Safety problems hinder the large-scale application of high-specific energy battery system. In this paper, a type of temperature thermo-responsive microcapsules…”
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  11. 11
  12. 12

    Errors in the reference electrode measurements in real lithium-ion batteries by Li, Yalun, Han, Xuebing, Feng, Xuning, Chu, Zhengyu, Gao, Xinlei, Li, Ruihe, Du, Jiuyu, Lu, Languang, Ouyang, Minggao

    Published in Journal of power sources (01-01-2021)
    “…Reference electrodes (REs) implanted in lithium-ion batteries are essential indicators in the fields of health monitoring and safety management. The…”
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  13. 13

    Characterization of large format lithium ion battery exposed to extremely high temperature by Feng, Xuning, Sun, Jing, Ouyang, Minggao, He, Xiangming, Lu, Languang, Han, Xuebing, Fang, Mou, Peng, Huei

    Published in Journal of power sources (25-12-2014)
    “…This paper provides a study on the characterizations of large format lithium ion battery cells exposed to extreme high temperature but without thermal runaway…”
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  14. 14

    Using probability density function to evaluate the state of health of lithium-ion batteries by Feng, Xuning, Li, Jianqiu, Ouyang, Minggao, Lu, Languang, Li, Jianjun, He, Xiangming

    Published in Journal of power sources (15-06-2013)
    “…A new method, probability density function (PDF), is proposed for evaluating the state of health (SOH) of electric storage batteries by analyzing the…”
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  15. 15

    A review of the internal short circuit mechanism in lithium‐ion batteries: Inducement, detection and prevention by Huang, Lili, Liu, Lishuo, Lu, Languang, Feng, Xuning, Han, Xuebing, Li, Weihan, Zhang, Mingxuan, Li, Desheng, Liu, Xiaobin, Sauer, Dirk Uwe, Ouyang, Minggao

    Published in International journal of energy research (01-09-2021)
    “…Summary Internal short circuit (ISC) of lithium‐ion battery is one of the most common reasons for thermal runaway, commonly caused by mechanical abuse,…”
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  16. 16

    A Review of Lithium-Ion Battery Failure Hazards: Test Standards, Accident Analysis, and Safety Suggestions by Lai, Xin, Yao, Jian, Jin, Changyong, Feng, Xuning, Wang, Huaibin, Xu, Chengshan, Zheng, Yuejiu

    Published in Batteries (Basel) (01-11-2022)
    “…The frequent safety accidents involving lithium-ion batteries (LIBs) have aroused widespread concern around the world. The safety standards of LIBs are of…”
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  17. 17

    Large-scale assembly of isotropic nanofiber aerogels based on columnar-equiaxed crystal transition by Li, Lei, Zhou, Yiqian, Gao, Yang, Feng, Xuning, Zhang, Fangshu, Li, Weiwei, Zhu, Bin, Tian, Ze, Fan, Peixun, Zhong, Minlin, Niu, Huichang, Zhao, Shanyu, Wei, Xiaoding, Zhu, Jia, Wu, Hui

    Published in Nature communications (05-09-2023)
    “…Ice-templating technology holds great potential to construct industrial porous materials from nanometers to the macroscopic scale for tailoring thermal,…”
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  18. 18

    Time Sequence Map for Interpreting the Thermal Runaway Mechanism of Lithium-Ion Batteries With LiNixCoyMnzO2 Cathode by Feng, Xuning, Zheng, Siqi, He, Xiangming, Wang, Li, Wang, Yu, Ren, Dongsheng, Ouyang, Minggao

    Published in Frontiers in energy research (26-11-2018)
    “…Thermal runaway is one of the key failure reasons for the lithium-ion batteries. The potential of thermal runaway in applications increases when the industry…”
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  19. 19

    All-temperature area battery application mechanism, performance, and strategies by Chen, Siqi, Wei, Xuezhe, Zhang, Guangxu, Wang, Xueyuan, Zhu, Jiangong, Feng, Xuning, Dai, Haifeng, Ouyang, Minggao

    Published in Innovation (New York, NY) (10-07-2023)
    “…Further applications of electric vehicles (EVs) and energy storage stations are limited because of the thermal sensitivity, volatility, and poor durability of…”
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  20. 20

    An Experimental Study on Preventing Thermal Runaway Propagation in Lithium-Ion Battery Module Using Aerogel and Liquid Cooling Plate Together by Yang, Xiaolong, Duan, Yongkang, Feng, Xuning, Chen, Tianyu, Xu, Chengshan, Rui, Xinyu, Ouyang, Minggao, Lu, Languang, Han, Xuebing, Ren, Dongsheng, Zhang, Zeping, Li, Cheng, Gao, Shang

    Published in Fire technology (01-11-2020)
    “…Preventing thermal runaway propagation is critical to improve the fire safety of electric vehicles. Experiments are conducted on the designed battery modules…”
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