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The Characteristics of Laser Welding of a Thin Aluminum Tab and Steel Battery Case for Lithium-Ion Battery

机译:锂离子电池薄铝突片和钢电池壳的激光焊接特性

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摘要

During lithium-ion battery packing, joining between battery cases and tabs is challenging for manufacturers due to dissimilar materials of the battery case and the tab, as well as their thicknesses. Laser welding, which has proven to produce a good weld with high productivity and low electrical resistance, is introduced to weld these materials. The weld was conducted with nanosecond-pulsed fiber laser and the effect of laser powers on mechanical and electrical properties as well as microstructure of the joint is investigated. The weld bead at the low laser power exhibited several blowholes on the surface, while the formation of voids including centerline and root cavities was observed through the cross-section. Moreover, the phenomenon of upward penetration (UP) was observed in all laser powers and recoil pressure which was generated by metal evaporation was supposed to cause the formation of an upward flow of the lower material. A hardness test was performed on both horizontal and vertical directions through the fusion zone. Additionally, the increase of upward penetration (UP) resulted in higher strength and lower electrical resistance of the weld.
机译:在锂离子电池填料期间,由于电池壳体和突片的不同材料以及突片以及它们的厚度,电池箱和突片之间的连接是挑战的制造商。引入激光焊接,该激光焊接具有高生产率和低电阻的良好焊接,以焊接这些材料。研究了焊缝,用纳秒脉冲光纤激光进行,研究激光功率对机械和电性能的影响以及接头的微观结构。低激光功率处的焊缝在表面上显示出几个鼓风机构,而通过横截面观察到包括中心线和根腔的空隙的形成。此外,在所有激光功率和通过金属蒸发产生的反冲压力中观察到向上渗透(向上)的现象应该导致形成下部材料的向上流动。通过融合区对水平和垂直方向进行硬度测试。另外,向上渗透(向上)的增加导致焊缝的更高强度和较低的电阻。

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