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MODULE COVER UPPER STRUCTURE, BATTERY MODULE AND METHOD OF PREVENTING THERMAL RUNAWAY OF BATTERY MODULE

机译:模块盖的上部结构,电池模块以及防止电池模块的热失控的方法

摘要

PROBLEM TO BE SOLVED: To provide a module cover upper structure capable of preventing propagation of thermal runaway caused by re-intrusion of high-temperature gas which is discharged from a resin module cover to the outside, but re-intrudes into the battery module.SOLUTION: A box-shaped module cover upper structure 40 which is configured to have an opened bottom surface and a wall surface is mounted to cover the upper portion of a module cover 20 of one or plural battery modules 10 in which a current supply portion of a battery pack comprising plural battery cells 1 connected in series or in parallel and each pressure release valve 1b of the plural battery cells are covered by the module cover 20. The wall surface of the module cover upper structure 40 has a ceiling face 42 serving as the outer wall surface at the uppermost stage, and one or plural stages of partition walls 44 which are disposed to be spaced from one another at predetermined intervals from the ceiling face 42 to the lower side. The partition wall 44 is formed of a material which is not molten at the temperature of gas discharged from the battery cell 1, and has an opening portion 45 located above at least the pressure release valve 1b of the battery cell 1.SELECTED DRAWING: Figure 1
机译:解决的问题:提供一种模块盖上部结构,该上部盖结构能够防止由于高温气体的再扩散而引起的热失控的传播,所述高温气体从树脂模块盖排出到外部但又重新进入电池模块中。解决方案:箱形模块盖上部结构40,其构造为具有敞开的底表面和壁表面,以覆盖一个或多个电池模块10的模块盖20的上部,其中,包括多个串联或并联连接的电池单元1的电池组,并且多个电池单元中的每个压力释放阀1b被模块盖20覆盖。模块盖上部结构40的壁表面具有用作顶板的顶面42。在最上层的外壁表面,以及从顶面42到第一壁以预定间隔彼此间隔开的一个或多个间隔壁44。下侧。分隔壁44由在从电池单元1排出的气体的温度下不会熔融的材料形成,并且具有至少位于电池单元1的压力释放阀1b上方的开口部45。 1个

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