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Analysis of Battery Safety and Hazards' Risk Mitigation

机译:电池安全性和降低风险的分析

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摘要

For several years now, there has been a strong drive in the automotive industry to displace the NiMH batteries in Hybrid Electric Vehicles (HEV) with lighter, more durable, more powerful and potentially less expensive Li-Ion batteries. These efforts have been hampered mostly by the concerns over the safety of the Li-Ion batteries. Such concerns have been overblown by merely focusing on abusive testing without paying equal attention to assessing the risk posed by such batteries in the event of a mishap. History shows that the automotive industry has been very successful in managing the risk posed by gasoline, a highly combustible fluid with an energy density 100 times more than the most energy-dense of advance batteries. This paper discusses a methodology developed for the risk assessment of advance batteries. Although the focus here is on the batteries used in hybrid, electric, or plug-in vehicles, the methodology itself, called Hazard Modes & Risk Mitigation Analysis (HMRMA), is quite general and can be used in other applications for batteries as well as for other components & parts that maybe considered hazardous. In addition, the methodology quantifies the risk associated with each hazard and becomes a valuable design tool to develop the most effective way of reducing the risk.
机译:几年来,汽车行业一直在大力推动将镍氢电池替换为混合动力电动汽车(HEV)中的更轻,更耐用,更强大,甚至可能更便宜的锂离子电池。这些努力主要由于对锂离子电池安全性的担忧而受到阻碍。仅关注滥用测试而没有同等注意评估在发生事故时此类电池带来的风险,这种担忧就被夸大了。历史表明,汽车行业在控制汽油带来的风险方面非常成功,汽油是一种高度易燃的流体,其能量密度是最先进的高级电池的100倍。本文讨论了一种用于高级电池风险评估的方法。尽管此处的重点是混合动力,电动或插电式车辆中使用的电池,但该方法本身称为“危害模式和风险缓解分析(HMRMA)”,它非常普遍,可用于电池的其他应用以及用于其他可能有害的零部件。此外,该方法可以量化与每种危害相关的风险,并成为开发降低风险的最有效方法的有价值的设计工具。

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