21700鋰離子電池在不同健康狀態(tài)下的熱失控實(shí)驗(yàn)研究
摘要:
開(kāi)展鋰離子電池?zé)崾Э匮芯?,可為提升電池?zé)岚踩?、減少新能源汽車(chē)熱災(zāi)害等提供重要幫助。針對(duì)高比能21700型NCM811鋰離子電池?zé)釣E用、老化等因素引起的熱失控問(wèn)題,通過(guò)實(shí)驗(yàn)研究了電池健康狀態(tài)(state of health,SOH)對(duì)電池充放電特性及自身熱失控行為的作用機(jī)制,量化分析了電池老化特性與熱失控觸發(fā)時(shí)間、表面溫度、工作電壓、燃爆特性、能量、TNT當(dāng)量及破壞半徑等特征參數(shù)。發(fā)現(xiàn)能量效率隨著老化循環(huán)次數(shù)的增加而降低,電池?zé)崾Э氐臏厣入SSOH的減小而下降,同時(shí)其自產(chǎn)熱起始溫度、熱失控觸發(fā)溫度與安全閥脫落溫度均減小,這表明老化電池?zé)崾Э赜|發(fā)所需的時(shí)間更短,60%SOH電池在608 s觸發(fā)熱失控,相比于100% SOH縮短了64.8%。SOH越小,電池?zé)崾Э貏×页潭仍饺?,熱失控后的質(zhì)量損失也越小。電池?zé)崾Э剡^(guò)程的峰值溫度、釋放的能量、TNT當(dāng)量與破壞半徑隨SOH的減小而降低,表明老化電池較新鮮電池?zé)崾Э仄茐男越档?。研究結(jié)果可為全生命周期21700電池?zé)崾Э氐男袨樘卣鞣治?、預(yù)警與火災(zāi)防控等提供參考。
關(guān)鍵詞: 21700三元鋰電池, 健康狀態(tài), 熱失控, 溫度, 能量, 破壞半徑
Abstract:
Research on the thermal runaway of lithium-ion batteries is crucial for enhancing battery thermal safety and reducing thermal incidents in new energy vehicles. This study focuses on thermal abuse and aging-induced thermal runaway issues in high-specific-energy 21700-type NCM811 lithium-ion batteries. Experimental research was conducted to explore the state of health (SOH) impacts on battery charging and discharging characteristics, and the mechanism underlying thermal runaway. The quantitative analysis covered battery aging characteristics and thermal runaway parameters, including triggering time, surface temperature, operating voltage, combustion characteristics, energy, TNT equivalent, and damage radius. The findings reveal that energy efficiency decreases with increasing aging cycles, and temperature rise during thermal runaway decreases with decreasing SOH. Notably, time required for thermal runaway triggering in aged batteries is substantially shorter. For example, a battery with 60% SOH triggered thermal runaway in 608 s, a 64.8% reduction compared to 100% SOH. Moreover, smaller SOH values correspond to weaker thermal runaway intensity and reduced mass loss after thermal runaway. During the thermal runaway process, peak temperature, released energy, TNT equivalent, and damage radius decrease with decreasing SOH. This indicates that thermal runaway damage in aged batteries is lower than in fresh batteries. The study results offer valuable insights for characterizing behavior, early warning systems, fire prevention, and control in the thermal runaway of full-lifecycle 21700 batteries.
Key words: 21700 ternary lithium battery, SOH, thermal runaway, temperature, energy, failure radius
中圖分類(lèi)號(hào):
X 932
相關(guān)知識(shí)
鋰離子電池安全狀態(tài)評(píng)估研究進(jìn)展
《電動(dòng)自行車(chē)用鋰離子電池健康評(píng)估工作指引》解讀
工信部:擬建立科學(xué)、準(zhǔn)確、簡(jiǎn)便的鋰離子電池健康評(píng)估流程和判定規(guī)則
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