• [張貼報告]Response Characteristics and Sensitivity Analysis of Thermal Runaway Propagation Parameters for LiFePO4 Batteries under various Pre-load forces
    00
    days
    00
    hours
    00
    minutes
    00
    seconds
    00
    days
    00
    hours
    00
    minutes
    00
    seconds

    [張貼報告]Response Characteristics and Sensitivity Analysis of Thermal Runaway Propagation Parameters for LiFePO4 Batteries under various Pre-load forces

    Response Characteristics and Sensitivity Analysis of Thermal Runaway Propagation Parameters for LiFePO4 Batteries under various Pre-load forces
    編號:204 稿件編號:330 訪問權限:僅限參會人 更新:2024-05-19 20:05:04 瀏覽:121次 張貼報告

    報告開始:暫無開始時間 (Asia/Shanghai)

    報告時間:暫無持續時間

    所在會議:[暫無會議] ? [暫無會議段]

    演示文件

    提示:該報告下的文件權限為僅限參會人,您尚未登錄,暫時無法查看。

    摘要
    The rapid advancement of electric vehicles and energy storage systems has highlighted the importance of battery thermal safety. Although it has garnered significant attention and been well-studied, the effect of pre-load force remains underexplored. This study emphasizes the impact of pre-load force, revealing that it can exacerbate thermal hazards and increase the gas production. However, once pre-load force exceeds 204 kgf, an extended and violent combustion reaction occurs to consume the combustible gases, mitigating the gas hazard. By combining Spearman correlation analysis and the entropy weight method to quantify this effect, indicating it significantly affects the minimum temperature rise rate and the heat accumulation, but has a lesser impact on the duration of TRP and total heat transfer, which further validates that pre-load force increases thermal hazards, while also indicating that pre-load force is not a crucial factor affecting the TRP process. In addition, based on the pre-load force sensitivity for individual batteries, it can be inferred that the impact of pre-load force can be ignored if TR propagates to the fourth battery. This work analyzes and quantifies the response sensitivity of batteries under non-standard operating conditions, laying a theoretical foundation for the assessment of battery performance and reliability analysis.
    關鍵字
    lithium-ion battery,thermal runaway propagation,prestress,sensitivity analysis
    報告人
    Shaoqi Cui
    China University of Mining and Technology

    稿件作者
    少琦 崔 中國礦業大學
    通 劉 中國礦業大學
    建華 黃 中國礦業大學
    翔宇 胡 中國礦業大學安全工程學院
    仙洋 郭 中國礦業大學
    心同 董 中國礦業大學
    國慶 朱 中國礦業大學
    發表評論
    驗證碼 看不清楚,更換一張
    全部評論

    聯系我們

    投稿事宜:張老師
    電話:0516-83995113
    會務事宜:張老師
    電話:0516-83590258
    酒店事宜:張老師
    電話:15852197548
    會展合作:李老師
    電話:0516-83590246
    登錄 注冊繳費 提交摘要 酒店預訂
  • 成人视频