av中文字幕一区二区三区久久_青青草在线视频免费观看_久草免费福利_日日噜噜夜夜狠狠爱视频免费樱桃_国产精品一级a级理论片在线观看_亚洲狠狠色综合蜜桃

FAQ
You are here:Home >> News >> FAQ
Lithium-ion battery thermal runaway process, is the thermal runaway reaction of different lithium batteries the same?
1068 2022-05-06
  Lithium-ion battery thermal runaway process, is the thermal runaway reaction of different lithium batteries the same? At present, the safety problem of the automotive power battery system is the safety of the battery group. The automotive power battery accidents in recent years are all caused by the thermal runaway of a certain battery cell in the lithium battery pack, which generates a lot of heat, which causes the surrounding battery cells to be heated and generate thermal runaway. Thermal runaway spread within a battery pack is a major concern for battery pack safety.
  Thermal runaway is the most serious safety incident for lithium-ion batteries. The thermal runaway of lithium-ion batteries is due to the fact that the rate of heat production is much higher than the rate of heat dissipation, and a large amount of heat accumulates inside the lithium-ion battery, causing a rapid rise in the temperature of the lithium-ion battery, resulting in spontaneous shrinkage and melting of the diaphragm, and decomposition of positive and negative active materials. The exothermic reaction caused the lithium-ion battery to catch fire and explode.
Lithium-ion battery thermal runaway process:
  Battery thermal runaway is caused by the fact that the heat generation rate of the battery is much higher than the heat dissipation rate, and a large amount of heat is accumulated and not dissipated in time. Essentially, "thermal runaway" is an energy-positive feedback loop process: an elevated temperature causes the system to heat up, the system heats up and the temperature rises, which in turn makes the system hotter, loosely divided , the battery thermal runaway can be divided into three stages:
1. The internal thermal runaway stage of the battery
  Due to internal short circuit, external heating, or self-heating of the battery itself during high current charging and discharging, the internal temperature of the battery rises to about 90°C to 100°C, and the lithium salt LiPF6 begins to decompose; the chemical activity of the carbon negative electrode in the charged state is very high, Close to metallic lithium, the SEI film on the surface decomposes at high temperature, and the lithium ions embedded in graphite react with the electrolyte and the binder, further pushing the battery temperature to 150 °C, and a new violent exothermic reaction occurs at this temperature. .
2. Battery bulge stage:
  When the temperature of the lithium battery reaches above 200°C, the positive electrode material decomposes, releasing a large amount of heat and gas, and the temperature continues to rise. At 250-350°C, the lithium intercalated negative electrode begins to react with the electrolyte.
3. Battery thermal runaway, explosion failure stage:
  During the reaction process, the charged cathode material begins to undergo a violent decomposition reaction, and the electrolyte undergoes a violent oxidation reaction, releasing a large amount of heat, generating high temperature and a large amount of gas, and the lithium battery will burn and explode.
Do different lithium batteries have the same thermal runaway reaction? :
  When heated externally, all lithium batteries undergo a thermal runaway that releases fumes and gases. For about half of the working cells, within about 15 seconds after thermal runaway, the gas accumulated in the oven was ignited causing a gas explosion with a major fume release process. Cells that were cycled or not, did not affect the occurrence of gas explosions, which occurred at all cycle aging levels from 0-300 full deep cycles.
  Compared with other types of batteries, lithium-ion batteries generate more heat, and their gas emissions are at a higher risk of explosion and fire. These risks are far from being fully understood, and it is possible to improve system safety through research and accident analysis. The type and severity of risk depends on the application and the size of the battery system. Due to the transmissibility of battery and module failures, failure consequences can increase significantly as battery system size increases.
  The lithium cobalt oxide battery has the highest thermal runaway temperature, which can reach 850 degrees Celsius; the nickel-cobalt-manganese ternary lithium battery is the second, which can reach 670 degrees Celsius; the lithium iron phosphate battery has no obvious thermal runaway, and the maximum temperature is about 400 degrees Celsius. The power of the thermal runaway process obviously depends on the energy of the lithium-ion battery. The lithium cobalt oxide battery has the highest specific energy, and the temperature change and gas discharge are also the most severe.
  There are many factors of thermal runaway, generally divided into two categories, internal factors and external factors. The main internal factors are: internal short circuit caused by battery production defects; improper use of the battery, resulting in internal lithium dendrites and short circuit between positive and negative electrodes. External factors are mainly: external factors such as extrusion and acupuncture lead to short circuit of lithium ion battery; external short circuit of battery causes excessive heat accumulation inside the battery; excessive external temperature leads to decomposition of SEI film and positive electrode material.
  The above is the thermal runaway process of lithium-ion batteries and the thermal runaway reactions of different lithium batteries. Generally, after thermal runaway occurs, it will spread downward. For example, after the first section of thermal runaway, heat transfer will begin to spread, and then the whole group will follow one by one like firecrackers. In short, in terms of thermal runaway expansion and suppression, R&D personnel should start from two aspects: safety protection design and lithium battery management system.
主站蜘蛛池模板: 四虎成人WWW成人影院_中文字幕无码大香线蕉_网友自拍视频在线观看_欧美在线观看二区_无码中文精品视视在线观看_一区二区三区四区国产免费 | 久久精品天天_成人必看www._9999国产精品欧美久久久久久_亚洲国产一区久久yourpan_美女被张开双腿日出白浆_在线免费国产 | 东北老妇爽的大叫天天看A片_亚洲国产精品无码久久久动漫_国产69精品久久99的软件特点_天天操天天射天天爽_亚洲888888在线播放_亚洲成人播放 | 相部屋在线_蜜臀AV性久久久久蜜臀AⅤ_91久操_一本大道香蕉视频在线观看_老色鬼a∨在线视频在线观看_欧美日韩精品码免费专区 | 日日操人人_狠狠色噜噜狠狠狠狠2021天天_国产高清在线观看AV片麻豆_永久四色_欧美特级限制片免费在线观看_日韩一级片黄色 国产天堂在线_国产精品自在线拍国产_男人阁久久_无码精品毛片基地_国产视频久久精品_亚洲大片精品永久免费看网站 | 18一20亚洲GAY无套_97无码超碰国产一区_国产亚洲精品久久久久久大师_久草91_97久久精品人人澡人人爽缅北_亚洲乱码一区AV春药高潮 | 永久免费看啪啪的网站_夜夜爽爽_中文字幕免费视频精品一_99热影院_日本一区二区精品_国内精品第一页 | 精东天美麻豆果冻传媒mv_国产精品自拍小视频_久久精品日产第一区二区三区的特点_东京av在线_精品无码成人片一区二区98_亚洲一区二区在线 | 欧美日韩在线观看一区_91久久爱成人_国产午夜精品久久_婷婷中文色字幕_欧美一区二区三区白人_国产69精品福利视频 | 色久悠悠综合图区国产精品_国产区在线观看成人精品_妙手房术在线观看_色小姐综合网_久草中文在线_国产一区二区欧美精品 | 国语自产精品视频_www四色com_一区在线观看_亚洲乱码av一区二区三区中文在线:_黄色一级在线播放_久久五月丁香合缴情网 | 成人免费A级毛片久久_99爱免费_久久国产精品99久久人人澡_中文字幕日韩精品欧美一区蜜桃网_熟女毛多熟妇人妻在线视频_又紧又大又爽精品一区二区 | 中文天堂在线www_国产一区不卡_亚洲综合日韩_丝袜+亚洲+另类+欧美+变态_激情视频免费网站_亚洲干美女视频 | 国产成人AV三级在线观看按摩_国产美女性生活_国产精品无圣光_精品久久久久久久大神国产_亚洲夂夂婷婷色拍WW47_毛片软件 | 在线观看国产网址你懂的_最新日韩精品在线观看_午夜性色福利免费视频在线播放_亚洲一二区精品_樱花草在线观看播放免费视频_av高清免费在线观看 | 简单av在线_97久久精品国产精品青草_日本高清生活片_99色精品视频_国产偷窥熟女精品视频_久久久久久一 | 日日摸处处碰夜夜爽_中国精品视频一区_精品国产自在精品国产精小说_www日本黄色网站_日本理论永久_国产精品91视频 | 日本xx13一18处交高清_亚洲国产精品无码二区_国产偷亚洲专区在线观看_下面一进一出好爽视频_一级在线免费视频_jizz亚洲大全 | 丝袜美腿在线视频_国产在线激情_国精品人妻无码一区二区三区3D_成人片黄网站色大片免费观看_avhd101高清谜片在线_俺也去操 | 四月是你的谎言免费观看动漫_97视频91_日韩av无码精品色午夜_久热这里_99久久久国产精品免费老熟女_丰满人妻少妇无码喷水 | 亚洲成片在线观看12345ba_国产精品免费久久久久久久久_国产精品爱selaoban_农村少妇一级毛片_亚洲AV无码乱码在线观看代蜜桃_在线观看的av | 国产极品在线播放_av视屏在线播放_免费看成人A片无码视频尤物_俄罗斯胖老太牲交_亚洲AV无码成人网站久久精品大_91亚洲国产成人精品一区二三 | 亚洲制服丝袜精品久久_91精品在线观看视频_国产精品激情综合五月天中文字幕_国产毛片a级_久久久久九九精品影院_国产精品99精品 | 一区二区免费高清视频_国产一级二级在线播放_久久久久99_欧美色图狠狠操_日本久久精品一区二区三区_亚洲av片不卡无码一 | 欧美色道_久久免费综合视频_18禁免费无码无遮挡网站_女人被狂爆到高潮免费视频_国产毛片777777_日韩福利小视频 | 韩国三级无码不卡在线观看_国产精品久久久久久久_大奶一区_青青草免费线观看97_在线观看免费播放av片_欧美激情精品久久久久久不卡 | 视频精品一区二区_奇米狠狠操_亚洲18色_18禁止观看强奷在线看_暴行JAPANESE人妻_班花在教室轮流澡到高潮视频 | 人妻体验按摩调情BD_91freehdxxxx亚洲_国产成人无码免费视频97动漫_日韩一级不卡_亚洲精品xxxx_japanese丰满少妇 | 亚洲国产精品三区_一直高潮h1v1_成人91在线观看_国产福利一区二区三区视频_午夜精品久久久久久久久久久久_亚洲乱码中文字幕久久孕妇黑人 | 东京热无码AV男人的天堂_日韩免费a级毛片无码a∨_一个人看的www日本高清视频_超清av在线_国产精品高清一区_乱码精品一区二区三区 | 亚洲国产另类精品专区_亚洲手机看片_久久成人亚洲精品_国产成人精品视频A片_91看国产_国产人碰人摸人爱免费视频 | 99精品久久久久久_里面也请好好动漫2在线观看_久久躁日日躁aaaaxxxx_亚洲VA在线VA天堂XXXX中文_伦理黄色片_国产专区av | 免费av中文高清_天天干免费视频_亚洲综合伦理_日本xxx影院_自拍1区_2017国产小视频 | 日本高清动作片www_日本va在线观看_一本大道视频大全在线_四虎影视最新地址_国产精品久久9a久美女性色_西行纪60集全免费播放 | 超碰在线97观看_成人高潮一区二区三区_免费国产在线无码_无码精油按摩潮喷在播放_超碰激情网_日韩一区二区高清精品综合视频 | 成年网站免费观看_少妇A级裸片AAAAA八戒_四川小少妇BBAABBAA_最新国内精品自在自线视频_久久美女网_人人添人人澡人人澡人人人人孕妇 | 无码精品人妻一区二区三区免费看_男人天堂1024_JLZZJLZZ亚洲乱熟无码_亚欧美视频_亚洲一本一道一区二区三区_日本不卡网站 | 国产av丝袜一区二区三区_铁牛tv萌白酱jk喷水视频_jizz老师喷水_久久久久久久久久网站_亚洲一区二区三区99_91免费在线视频 | 色亚洲欧美_朋友人妻系列150合集_国产成人亚洲综合无码_午夜精品久久久久久中宇牛牛影视_久久天天色综合_uuzyz噜噜资源站 | 97性潮久久久久久久久动漫_欧洲在线视频一区_久久AV无码精品人妻出轨_日本a级午夜精华欧美大片_亚洲欧美爱爱_久久综合欧美精品亚洲一区 | 97超碰人人做人人爽3d_黄色片免费看._免费观看日韩毛片_中文字幕在线观看视频网站_亚洲精品久久五月天堂_亚洲色偷偷综合亚洲AV伊人 |