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Microcutting of multi-layer foils with IR and green ns-pulsed fibre lasers for Li-Ion batteries

机译:锂离子电池用红外和绿色ns脉冲光纤激光器对多层箔进行微切割

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摘要

Li-Ion batteries are crucial components in mobile devices that range from cellular phones to electrical vehicles. With the increasing demand in the market for these devices, manufacturers are required to reduce production cycle times. The main components of the Li-Ion batteries are anode and cathode foils, which are cut in required forms by punching. These materials consist of Cu sheets sandwiched between graphite layers for anode, and Al sheets sandwiched between Li metal oxide layers for cathode. In punching, the process quality degrades in time due to tool wear. This eventually causes machine down times for tool repair or change, which can increase the whole process cycle time drastically. Laser remote cutting based on ablation can be adequate solution to substitute the current technology, if the cutting edge quality and productivity can be matched to punching. This paper investigates laser microcutting of Li-Ion battery anode and cathode thin foils with ns-pulsed fibre lasers. These laser sources are cost effective and provide industrially robust operation. Two systems operating with 1 μm and 0.5 μm wavelength and 250 ns and 1 ns pulse durations respectively were compared. The cut kerfs were evaluated in terms of clearance, which is defined as the extent of the exposed middle layer of the sandwich (i.e. Cu or Al) at the laser cut kerf.
机译:锂离子电池是从蜂窝电话到电动汽车的移动设备中的关键组件。随着市场对这些设备的需求不断增加,要求制造商缩短生产周期。锂离子电池的主要成分是阳极箔和阴极箔,可通过冲压将其切割成所需的形式。这些材料由夹在用于阳极的石墨层之间的Cu板和夹在用于阴极的Li金属氧化物层之间的Al板组成。在冲压过程中,由于工具磨损,加工质量会随时间降低。这最终会导致机器停机以进行工具维修或更换,这可能会大大增加整个过程的周期时间。如果可以将先进的质量和生产率与打孔相匹配,那么基于消融的激光远程切割就可以替代现有技术,成为解决方案。本文研究了使用ns脉冲光纤激光器对锂离子电池阳极和阴极薄箔进行激光微切割的方法。这些激光源具有成本效益,并提供了工业上可靠的操作。比较了两个工作波长分别为1μm和0.5μm且脉冲持续时间为250 ns和1 ns的系统。切割缝隙是根据间隙进行评估的,间隙的定义是夹层在激光切割缝隙处的中间层(即Cu或Al)的暴露程度。

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