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Fiber Laser Welding Properties of Copper Materials for Secondary Batteries

机译:二次电池用铜材料的光纤激光焊接性能

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Secondary battery is composed of four main elements: cathodes, anodes, membranes and electrolyte. The cathodes and the anodes are connected to the poles that allow input and output of the current generated while the battery is being charged or discharged. In this study laser welding is conducted for 40 sheets of pure copper material with thickness of 38μm, which are used in currently manufactured lithium-ion batteries, using pulse-wave fiber laser to compare welded joint to standard bolt joint and to determine optimum process parameters. The parameters, which has significant impact on penetration of the pulse waveform laser to the overlapped thin sheets, is the peak power while the size of the weld zone is mainly affected by the pulse irradiation time and the focal position. It is confirmed that overlapping rate is affected by the pulse repetition rate rather than by the pulse irradiation time. At the cross-section of the weld zone, even with the increased peak power, the width of the front bead weld size does not change significantly, but the cross-sectional area becomes larger. This is because the energy density per pulse increases as the peak power increases.
机译:二次电池由四个主要元素组成:阴极,阳极,膜和电解质。阴极和阳极连接到两极,允许对电池充电或放电时产生的电流进行输入和输出。在这项研究中,对40片厚度为38μm的纯铜材料进行了激光焊接,这些材料用于当前制造的锂离子电池中,使用脉冲波光纤激光器将焊接接头与标准螺栓接头进行比较,并确定最佳工艺参数。对脉冲波形激光穿透到重叠的薄板有很大影响的参数是峰值功率,而焊接区的大小主要受脉冲照射时间和焦点位置影响。可以确认,重叠率受脉冲重复率的影响,而不是受脉冲照射时间的影响。在焊接区的横截面处,即使峰值功率增加,前焊道焊缝的宽度也不会显着变化,但横截面面积会变大。这是因为随着峰值功率的增加,每个脉冲的能量密度增加。

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