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Laser cutting of graphite anodes for automotive lithium-ion secondary batteries: Investigations in the edge geometry and heat affected zone

机译:汽车锂离子二次电池石墨阳极的激光切割:边缘几何形状和热影响区的研究

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摘要

To serve the high need of lithium-ion secondary batteries of the automobile industry in the next ten years it is necessary to establish highly reliable, fast and non abrasive machining processes. In previous works [1] it was shown that high cutting speeds with several meters per second are achievable. For this, mainly high power single mode fibre lasers with up to several kilo watts were used. Since lithium-ion batteries are very fragile electro chemical systems, the cutting speed is not the only thing important. To guarantee a high cycling stability and a long calendrical life time the edge quality and the heat affected zone (HAZ) are equally important. Therefore, this paper tries to establish an analytical model for the geometry of the cutting edge based on the ablation thresholds of the different materials. It also deals with the composition of the HAZ in dependence of the pulse length, generated by laser remote cutting with pulsed fibre laser. The characterisation of the HAZ was done by optical microscopy, SEM, EDX and Raman microscopy.
机译:为了在未来十年中满足汽车工业对锂离子二次电池的高需求,有必要建立高度可靠,快速且无磨蚀的加工工艺。在以前的工作中[1]表明,每秒几米的高切削速度是可以实现的。为此,主要使用功率高达几千瓦的高功率单模光纤激光器。由于锂离子电池是非常脆弱的电化学系统,因此切割速度并不是唯一重要的事情。为了确保较高的循环稳定性和较长的日历寿命,边缘质量和热影响区(HAZ)同样重要。因此,本文尝试根据不同材料的烧蚀阈值建立切削刃几何形状的分析模型。它还根据脉冲长度处理热影响区的组成,该脉冲长度是通过脉冲光纤激光器进行激光远程切割而产生的。通过光学显微镜,SEM,EDX和拉曼显微镜对HAZ进行表征。

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