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Packaging - Materials Review

机译:包装 - 材料审查

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摘要

Nowadays, a large number of different electrochemical energy storage systems are known. In the last two decades the development was strongly driven by a continuously growing market of portable electronic devices (e.g. cellular phones, lap top computers, camcorders, cameras, tools). Current intensive efforts are under way to develop systems for automotive industry within the framework of electrically propelled mobility (e.g. hybrid electric vehicles, plug-in hybrid electric vehicles, full electric vehicles) and also for the energy storage market (e.g. electrical grid stability, renewable energies). Besides the different systems (cell chemistries), electrochemical cells and batteries were developed and are offered in many shapes, sizes and designs, in order to meet performance and design requirements of the widespread applications. Proper packaging is thereby one important technological step for designing optimum, reliable and safe batteries for operation. In this contribution, current packaging approaches of cells and batteries together with the corresponding materials are discussed. The focus is laid on rechargeable systems for industrial applications (i.e. alkaline systems, lithium-ion, lead-acid). In principle, four different cell types (shapes) can be identified - button, cylindrical, prismatic and pouch. Cell size can be either in accordance with international (e.g. International Electrotechnical Commission, IEC) or other standards or can meet application-specific dimensions. Since cell housing or container, terminals and, if necessary, safety installations as inactive (non-reactive) materials reduce energy density of the battery, the development of low-weight packages is a challenging task. In addition to that, other requirements have to be fulfilled: mechanical stability and durability, sealing (e.g. high permeation barrier against humidity for lithium-ion technology), high packing efficiency, possible installation of safety devices (current interrupt device, valve, etc.), chemical inertness, cost issues, and others. Finally, proper cell design has to be considered for effective thermal management (i.e. cooling and heating) of battery packs.
机译:如今,已知大量不同的电化学能量存储系统。在过去的二十年中,开发是由不断增长的便携式电子设备市场的强烈推动(例如,蜂窝电话,膝盖顶级电脑,摄像机,摄像机,工具)。目前的强化努力正在开发汽车行业的系统,以便在电气推进的移动性(例如混合动力汽车,插电式混合动力电动汽车,全电动车辆)以及能量存储市场(例如电网稳定,可再生能量)。除了不同的系统(细胞化学品)外,开发了电化学电池和电池,以满足广泛应用的性能和设计要求,提供了许多形状,尺寸和设计。因此,适当的包装是设计最佳,可靠和安全的电池的重要技术步骤。在该贡献中,讨论了电池和电池的当前包装方法与相应的材料一起进行。该重点是用于工业应用的可再充电系统(即碱性系统,锂离子,铅酸)。原则上,可以识别四种不同的细胞类型(形状) - 按钮,圆柱形,棱柱形和袋。细胞大小可以是根据国际(例如国际电工委员会,IEC)或其他标准的,或者可以满足特定于应用的维度。由于电池壳体或容器,端子和如果需要,安全装置作为非活动(非反应性)材料降低了电池的能量密度,低重量封装的发展是一个具有挑战性的任务。除此之外,还必须满足其他要求:机械稳定性和耐久性,密封(例如,锂离子技术湿度的高渗透屏障),高包装效率,安全装置的安装(电流中断装置,阀门等。 ),化学惰性,成本问题和其他问题。最后,必须考虑适当的细胞设计,用于电池组的有效热管理(即冷却和加热)。

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