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Fundamental Studies of Lithium Sulfur Batteries for eVTOL Aircraft

机译:eVTOL飞机锂硫电池的基础研究

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Lithium sulfur (LiS) batteries have the potential to outperform lithium ion batteries and secure a space for both civilian and military electric vertical takeoff and landing (eVTOL) aircraft. The high theoretical capacity of sulfur promises high specific energy LiS batteries that would enable practical eVTOL aircraft. The drawbacks are low cycle count and uncertain behavior at high power. First, results from a conceptual eVTOL sizing code is used to demonstrate the benefits of advanced battery technology with increased specific energy for an intracity air taxi mission with an electric quadcopter. Next, small-scale LiS cells are fabricated with a polyacrylonitrile-sulfur cathode, lithium anode, and various liquid electrolytes. Electrochemical cycling data is analyzed, including tests at high C-Rates. The C-Rate test showed the ability of the LiS cell to recover initial capacity after experiencing high C-Rates of up to 6C. Microscopy analysis was performed on a cycled LiS cell to observe the cell mechanisms and cause of cell degradation. In conclusion, the advanced specific energy of LiS allows for a more effective quadcopter, with a weight, size, and payload suited for intracity travel. Additionally, characterization of small-scale LiS cells shows high specific capacity and good cycle life of over 600 cycles. Finally, understanding the behavior of larger, scaled up LiS batteries is crucial for eVTOL, and is part of future work.
机译:锂硫(LiS)电池具有超越锂离子电池的潜力,并可以为民用和军用电动垂直起降(eVTOL)飞机提供空间。硫的高理论容量有望提供高比能LiS电池,这将使实用的eVTOL飞机成为可能。缺点是周期数低,高功率时行为不确定。首先,使用概念性的eVTOL尺寸代码得出的结果来证明先进的电池技术的优势,该技术具有增加的比能量,适用于电动四轴飞行器的城市空中滑行任务。接下来,用聚丙烯腈-硫阴极,锂阳极和各种液体电解质制造小规模的LiS电池。分析电化学循环数据,包括在高C速率下进行的测试。 C速率测试显示LiS电池在经历高达6C的高C速率后具有恢复初始容量的能力。在循环的LiS细胞上进行了显微镜分析,以观察细胞机制和细胞降解的原因。总而言之,LiS的先进比能可实现更有效的四轴飞行器,其重量,尺寸和有效载荷均适合城市内旅行。此外,对小型LiS电池的表征显示出高比容量和超过600个循环的良好循环寿命。最后,了解较大规模的LiS电池的性能对于eVTOL至关重要,并且是未来工作的一部分。

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