首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A NOVEL APPROACH FOR PREDICTING THERMAL RUNAWAY IN ELECTRIC VEHICLE BATTERIES WHEN INVOLVED IN A COLLISION
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A NOVEL APPROACH FOR PREDICTING THERMAL RUNAWAY IN ELECTRIC VEHICLE BATTERIES WHEN INVOLVED IN A COLLISION

机译:一种新的方法,用于在碰撞中预测电动车辆电池热失控的方法

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Electric Vehicle (EV) battery manufactures are under pressure to ensure their products are safe and not prone to undetectable heat after an impact, which could lead to thermal runaway. Constant monitoring of the battery's behaviour and, in particular, heat generation is therefore important for the safety of the vehicle and the occupant. An aim of this research is to use a series of battery models to study the charge/discharge and thermal behaviour of EV lithium ion batteries under normal and damaged conditions through modelling and physical/electrical testing. An equivalent circuit model is identified and tested to determine the electrical behaviour of the batteries and a 2 degree of freedom (DOF) model is discussed for the plastic deformational behaviour of the battery compartment as the result of an impact. The ultimate goal of this work is to develop a new model integrating physical, chemical, thermal and electrical behaviour to improve safety.
机译:电动车(EV)电池制造业受到压力,以确保其产品在撞击后不可检测的热量,这可能导致热失控。因此,对电池行为的持续监测,因此对于车辆和乘员的安全性是重要的。该研究的目的是使用一系列电池模型来研究正常和损坏的条件下EV锂离子电池的充电/放电和热行为,通过建模和物理/电动测试。识别和测试等效电路模型以确定电池的电池的电气行为和2型自由度(DOF)模型被讨论为电池盒的塑性变形行为作为撞击的结果。这项工作的最终目标是开发一种全新的模型,整合物理,化学,热和电气行为,以提高安全性。

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