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Technical Performance and Energy Intensity of the Electrode-Separator Composite Manufacturing Process

机译:电极隔膜复合制造工艺的技术性能和能量强度

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摘要

Energy storage is one of the key technological factors that determine the success of a sustainable future. Especially green mobility concepts for electric or hybrid electric vehicles highly depend upon storage technologies with high energy density and light-weight materials. At the same time, innovative production processes should be conceived that ensure energy and resource efficient manufacturing of these energy storage devices. This paper focuses on the technical as well as dynamic energetic performance analysis and evaluation of an innovative electrode-separator composite manufacturing process of lithium-ion batteries for automotive applications. The technical performance indicators such as battery capacity and the energy intensity of the manufacturing process are highly dependent upon process parameters, machine and product design. Hence, in-depth process knowledge must be acquired to understand interdependencies between all system components. Thus, the manufacturing process is analysed in terms of its dynamics, and correlations between process parameters, process energy demand and final product properties are assessed. The resulting knowledge is important for the subsequent design of large-scale products and processes involved design, as well as for characterisation of the manufacturing process for life cycle inventory databases or life cycle costing calculations.
机译:能量存储是确定可持续未来成功的关键技术因素之一。特别是电动或混合动力汽车的绿色移动性概念高度取决于具有高能量密度和轻质材料的存储技术。与此同时,应设想创新的生产流程,确保能源和资源有效地制造这些能量存储设备。本文重点介绍了汽车应用锂离子电池的创新电极分离器复合制造工艺的技术以及动态能量性能分析和评价。技术性能指标如电池容量和制造过程的能量强度高度依赖于工艺参数,机器和产品设计。因此,必须在深入的过程知识中获取以理解所有系统组件之间的相互依赖性。因此,根据其动态分析制造过程,并评估过程参数之间的相关性,处理能量需求和最终产品特性。由此产生的知识对于随后的大型产品和过程设计涉及设计,以及用于生命周期库存数据库或生命周期成本计算的制造过程的表征。

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