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首页> 外文期刊>RSC Advances >Thermal-runaway experiments on consumer Li-ion batteries with metal-oxide and olivin-type cathodes
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Thermal-runaway experiments on consumer Li-ion batteries with metal-oxide and olivin-type cathodes

机译:金属氧化物和奥利肽型阴极消费锂离子电池的热失控实验

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摘要

Li-ion batteries play an ever-increasing role in our daily life. Therefore, it is important to understand the potential risks involved with these devices. In this work we demonstrate the thermal runaway characteristics of three types of commercially available Li-ion batteries with the format 18650. The Li-ion batteries were deliberately driven into thermal runaway by overheating under controlled conditions. Cell temperatures up to 850 °C and a gas release of up to 0.27 mol were measured. The main gas components were quantified with gas-chromatography. The safety of Li-ion batteries is determined by their composition, size, energy content, design and quality. This work investigated the influence of different cathode-material chemistry on the safety of commercial graphite-based 18650 cells. The active cathode materials of the three tested cell types were (a) LiFePO _(4) , (b) Li(Ni _(0.45) Mn _(0.45) Co _(0.10) )O _(2) and (c) a blend of LiCoO _(2) and Li(Ni _(0.50) Mn _(0.25) Co _(0.25) )O _(2) .
机译:锂离子电池在日常生活中发挥了不断增加的作用。因此,重要的是要理解这些设备所涉及的潜在风险。在这项工作中,我们展示了三种类型的市售锂离子电池的热失控特性,其具有18650年的格式。通过在受控条件下过热,锂离子电池被蓄热进入热失控。测量细胞温度高达850℃和高达0.27mol的气体释放。主气组分用气相色谱法量化。锂离子电池的安全性由它们的组成,尺寸,能量含量,设计和质量决定。这项工作研究了不同阴极材料化学对基于商业石墨的18650个细胞的影响。三种测试细胞类型的活性阴极材料是(a)LiFePo _(4),(b)Li(Ni _(0.45)Mn _(0.45)Co _(0.10))O _(2)和(c) LiCoO_(2)和Li的混合(Ni _(0.50)Mn _(0.25)Co _(0.25))O _(2)。

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