主管:中华人民共和国应急管理部
主办:应急管理部天津消防研究所
ISSN 1009-0029  CN 12-1311/TU

消防科学与技术 ›› 2026, Vol. 45 ›› Issue (7): 73-80.

• • 上一篇    下一篇

全氟己酮复合灭火剂的锂电池热失控抑制性能及机理研究

高诗贺, 张肖, 周晓猛   

  1. (中国民航大学 民航热灾害防控与应急重点实验室,天津 300300)
  • 收稿日期:2025-07-17 修回日期:2025-11-06 出版日期:2026-07-15 发布日期:2026-07-15
  • 作者简介:高诗贺,中国民航大学,硕士研究生,主要从事锂电池热失控抑制技术研究,天津市东丽区津北公路2898号,300300。
  • 基金资助:
    国家自然科学基金民航联合基金重点项目(U2233202)

Study on the inhibitory performance and mechanism of perfluorohexane composite fire extinguishing agent on thermal runaway of lithium-ion battery

Gao Shihe, Zhang Xiao, Zhou Xiaomeng   

  1. (Key Laboratory of Civil Aviation Thermal Hazards Prevention and Emergency Response, Civil Aviation University of China, Tianjin 300300, China)
  • Received:2025-07-17 Revised:2025-11-06 Online:2026-07-15 Published:2026-07-15

摘要: 针对全氟己酮在抑制锂电池热失控过程中瞬时冷却能力不足、二次升温等问题,本文基于热失控传播特性与分子间相互作用理论,设计了全氟己酮(Novec 1230)与R236fa、R227ea、R116 3种含氟气体的复合体系,开展了18650型锂电池热失控的复合灭火剂抑制试验。结果表明,3种复合灭火剂均优于单一全氟己酮,能够有效降低峰值温度并延缓热扩散,其中,Novec 1230/R227ea组合降温速率最高(10.6 ℃/s),后期温度保持稳定,无明显二次升温,综合控温性能最优。进一步基于Gaussian 16软件开展密度泛函理论计算,分析了复合组分间的分子间作用力与结构稳定性。结果显示,Novec 1230/R227ea体系的分子间作用能最高(-33.62 kJ/mol),NCI分析揭示其范德华力作用显著,表明该体系协同效应更强,结构更稳定,能够从微观层面解释其良好的灭火表现。

关键词: 全氟己酮, 锂电池, 热失控, 分子间作用能, 复合抑制剂

Abstract: To address the issues of insufficient instantaneous cooling capacity and secondary temperature rise during the suppression of thermal runaway in lithium-ion batteries by perfluorohexanone (Novec 1230), this study designs composite agents comprising Novec 1230 and three fluorinated gases—R236fa, R227ea, and R116—based on the characteristics of thermal runaway propagation and intermolecular interaction theory. Suppression experiments were conducted on 18650-type lithium-ion batteries undergoing thermal runaway. The results indicate that all three composite agents outperform pure Novec 1230 in reducing peak temperatures and delaying thermal diffusion. Among them, the Novec 1230/R227ea combination exhibited the highest cooling rate (10.6 ℃/s), maintained stable temperatures in the later stages, and effectively avoided secondary temperature rise, demonstrating the best overall temperature control performance. Furthermore, density functional theory (DFT) calculations were performed using Gaussian 16 to investigate the intermolecular interactions and structural stability of the composite systems. The results show that the Novec 1230/R227ea system has the highest intermolecular interaction energy (-33.62 kJ/mol). Non-covalent interaction (NCI) analysis reveals pronounced van der Waals forces, indicating a stronger synergistic effect and greater structural stability, which provide a microscopic explanation for its superior fire suppression performance.

Key words: perfluorohexanone, lithium-ion battery, thermal runaway, intermolecular interaction energy, compound inhibitor