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A Test Approach for Evaluating the Safety Considering Thermal Runaway Propagation within the Battery Pack

机译:考虑电池组内热失控传播的安全性评估安全性的测试方法

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Accidents with thermal runaway (TR) of lithium ion batteries occurred sporadically. In order to diminish the TR hazard from abuse conditions, battery must pass specific test standards. However, the TR triggering at single cells cannot be totally eliminated although passing the test standards. The total energy of the battery pack during TR propagation can be huge and catastrophic. Therefore the prevention of the TR propagation must be considered in safety design of the REESS. A standardized test approach to evaluate the hazard potential of TR propagation in the battery pack is proposed in this paper. The judgement of TR is determined by three proposed criteria. Experiments are conducted to validate the proposed approach to evaluate safety of the battery pack under TR propagation. A lumped parameter model with 18 series cells is proposed to simulate the heating triggered TR propagation experiments. From the simulation results, it is indicated that heating power has significant effect on TR propagation. Large heat power is recommended in the test approach to induce the effect on TR propagation characteristics.
机译:摩托地发生锂离子电池的热失控事故(TR)。为了从滥用条件下减少TR危险,电池必须通过特定的测试标准。然而,尽管通过测试标准,但不能完全消除在单个细胞处的TR触发。 TR传播期间电池组的总能量可能是巨大的灾难性和灾难性的。因此,必须考虑防止TR传播的安全性设计。本文提出了一种评价电池组中TR传播的危险电位的标准化测试方法。 TR的判断由三个提出的标准确定。进行实验以验证所提出的方法,以评估电池组在TR繁殖下的安全性。提出了一种具有18系列电池的总参数模型,用于模拟加热触发的TR传播实验。从仿真结果表明,加热功率对TR繁殖具有显着影响。在测试方法中建议大量热功率诱导对TR传播特性的影响。

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