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Fault tree analysis of prismatic lithium thionyl chloride (Li/SOCl/sub 2/) battery cells - phase 1

机译:棱氯锂氯化锂(Li / Socl / Sub 2 /)电池单元的故障树分析 - 阶段1

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This paper addresses and presents the initial key findings of a fault tree analysis, which was conducted in phase 1 of a project to address the reliability of prismatic lithium thionyl chloride (Li/SOCl/sub 2/) battery cells. These types of battery cells are typically used in a large range of battery products, from OEM applications to military applications (Levy and Bro, 1987; Miles, 2001). Specialized high-power, high current, high rate lithium batteries, based upon nonaqueous liquid (i.e., thionyl chloride) cathodes can be found in aerospace and military applications where high energy density is required for critical mission requirements (Baldwin et al., 1990; Linden and Reddy, 2002; Miles, 2001; Vincent, 1999). The initial description of the fault tree analysis (i.e., the translation of the failure behavior of a physical system into a visual diagram) is covered in this paper. However, the "logic model" aspect of the FTA will be addressed in the future (i.e., in phase 2).
机译:本文地址并介绍了故障树分析的初始关键发现,该初始关键发现是在项目的第1阶段进行,以解决棱柱锂氯化锂(LI / SOCL / SUB 2 /)电池单元的可靠性。这些类型的电池单元通常用于大量电池产品,从OEM应用到军事应用(Levy和Bro,1987; Miles,2001)。基于非水液体(即亚硫酰氯)阴极的专业大功率,高电流,高速锂电池可以在航空航天和军用应用中找到,在临界任务要求需要高能量密度(Baldwin等,1990;林登和雷迪,2002;英里,2001; Vincent,1999)。本文介绍了故障树分析的初始描述(即,物理系统将物理系统的故障行为转换为视图)。然而,FTA的“逻辑模型”方面将在未来解决(即,在第2阶段)。

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