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Deconstruction of UN38.3 into a Process Flowchart

机译:解构UN38.3进程流程图

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This paper will discuss a compliance demonstration methodology for UN38.3, an international regulation which includes a series of tests that, when successfully met, ensure that lithium metal and lithium ion batteries can be safely transported. Many battery safety regulations, such as FMVSS and ECE, include post-crash criteria that are clearly defined. UN38.3 is unique in that the severity of the tests drove changes to battery design and function. Another unique aspect of UN38.3 is that the regulatory language can lead to different interpretations on how to run the tests and apply pass/fail criteria; there is enough ambiguity that the tests could be run very differently yet all meet the actual wording of the regulation. A process was created detailing exactly how to run the tests to improve consistency among test engineers. As part of this exercise, several tools were created which assist in generating a test plan that complies with the UN38.3 regulation. The requirement configuration table and flowcharts can be used to determine testing requirements at both the module (sub-assembly) and pack (end-item assembly) levels. This paper describes the process used to develop the table and flowcharts and how they can be used to help identify appropriate UN38.3 test plans.
机译:本文将讨论UN38.3的合规性演示方法,该方法是一个国际规管,其中包括一系列测试,当成功达到时,确保可以安全地运输锂金属和锂离子电池。许多电池安全法规,如FMVSS和ECE,包括明确定义的崩溃后标准。 UN38.3是独一无二的,因为测试的严重程度驱动了电池设计和功能的变化。 UN38.3的另一个独特方面是,监管语言可能导致如何运行测试和应用通行证/失败标准的不同解释;有足够的模棱两可是测试可以非常不同地运行,但所有这些都会满足规范的实际措辞。创建一个过程确切地详细说明了如何运行测试以提高测试工程师之间的一致性。作为本次练习的一部分,创建了几种工具,有助于生成符合UN38.3监管的测试计划。需求配置表和流程图可用于确定模块(子组件)和包(终端项目组装)级别的测试要求。本文介绍了用于开发表和流程图的过程以及如何使用它们来帮助确定适当的UN38.3测试计划。

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