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Advanced Bipolar Lithium-Ion Battery

机译:先进的双极锂离子电池

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There are many potential equipment platforms both commercial and military that require enabling battery technology with a specific energy greater than 400 watt hours per kilogram. These platforms include electric vehicles, high altitude airships, and electrically powered unmanned aerial vehicles all of which have the potential to significantly affect the United States commercial and military economies. Mobile Energy Products Inc. (MEPI) is developing advanced bipolar lithium-ion cell chemistry that has the potential to bring into being batteries that have a specific energy greater than 400 watt hours per kilogram. MEPI is working with the Energy Storage Research Group (ESRG) of Rutgers, The State University of New Jersey to develop such a chemistry based on nanocomposite materials. The cell chemistry when incorporated into MEPI bipolar lithium-ion technology is expected to yield batteries that can produce power over a wide temperature range at reasonable current rates. Although initial testing indicates that cells with a moderate cycle life will be initially produced, it is expected that the nanocomposite material has the potential with further development to produce cells which have long cycle life and good shelf life which will allow the batteries to have a long useful life. Because the bipolar lithium-ion fabrication technology is based on proven commercial processes and utilizes inexpensive raw materials the batteries are expected to be cost competitive in the commercial and military markets. This paper will present design data that will show the characteristics and the capabilities of the advanced bipolar lithium-ion cells to meet the requirements for developing batteries which can enable batteries with a specific energy greater than 400 watt hours per kilogram over a range of temperatures.
机译:商业和军事有许多潜在的设备平台,需要使电池技术能够每公斤大于400瓦的特定能量。这些平台包括电动车辆,高海岸飞艇和电动无人驾驶航空车辆,所有这些平台都有可能会显着影响美国商业和军事经济体。移动能源产品Inc.(MEPI)正在开发先进的双极锂离子电池化学,具有潜力,可以成为每公斤400瓦的特定能量的电池。 MEPI正在使用新泽西州立大学罗格斯罗格斯储存研究组(ESRG),以发展基于纳米复合材料的化学。当掺入MEPI双极锂离子技术时,细胞化学预计会产生可以在合理的电流率下产生功率的电池。虽然初始测试表明,最初产生具有中等循环寿命的细胞,但预期纳米复合材料具有进一步开发的潜力,以产生长循环寿命和良好保质期的电池,这将使电池能够长期存在有用的生活。由于双极锂离子制造技术基于经过验证的商业过程,并且利用廉价的原料,电池预计在商业和军事市场中将具有成本竞争力。本文将呈现设计数据,该数据将显示先进双极锂离子电池的特性和能力,以满足开发电池的要求,该电池可以使电池在一系列温度范围内每公斤大于400瓦特。

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