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Laser dissimilar welding of copper and steel thin sheets for battery production

机译:电池生产铜薄板的激光异种焊接

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摘要

Laser processing of metallic thin sheets has gained undoubted industrial interest in the last decade especially due to its implications in the e-mobility field. In particular, dissimilar welding of thin sheets made of different materials, such as aluminum, copper, and steel is nowadays recognized as an effective solution for many joining applications in battery and related component production. According to these considerations, the present paper is aimed at evaluating the possibility to perform a sound joining of thin copper sheets on thin steel ones in a lap-welding configuration. This application is of particular interest especially when cylindrical cells have to be electrically connected to any of the elements constituting the battery, such as printed circuit boards, busbars, etc. By means of a continuous wave fiber laser and a galvo scanner, an experimental campaign was carried out in order to define a process window for characterizing the above-mentioned welding application. The results were characterized by means of metallographic analyses, microhardness measurements, electrical conductivity tests, and scanning electron microscopy-energy dispersive system analyses. Particular attention was placed on the role of process parameters in controlling the penetration depth on the lower steel layer, since it constitutes the external housing of the single cell and a drop through can seriously damage the cell itself.
机译:在过去的十年中,金属薄板的激光加工在过去十年中,特别是由于其对电子移动领域的影响。特别地,如今,由不同材料制成的薄板的不同焊接如铝,铜和钢,如电池和相关组分生产中的许多连接应用的有效解决方案。根据这些考虑因素,本文旨在评估在焊接构型薄钢板上对薄钢板上的薄铜板进行声音连接的可能性。特别是当圆柱形电池必须电连接到构成电池的任何元件,例如印刷电路板,汇流条等,通过连续波光纤激光器和Galvo扫描仪,实验活动是特别感兴趣的进行了以定义用于表征上述焊接应用的过程窗口。结果以金相分析,微硬度测量,导电性试验和扫描电子显微镜 - 能量分散系统分析为特征。特别注意过程参数在控制下钢层上的穿透深度时的作用,因为它构成了单个电池的外壳,并且可以严重损坏细胞本身。

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