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The Influence of Welding Process Parameters on Pore Formation in Pulsed Laser-Welded Vacuum Plate Glazing

机译:焊接工艺参数对脉冲激光焊接真空板玻璃中孔形成的影响

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摘要

To explore the mechanism of the pore formation in the laser-welded vacuum plate glazing sealing layer, a vacuum plate glazing laser side sealing test was carried out. The influence of the pulse current, pulse duration time, pulse frequency and welding speed on the pores of the sealing layer was studied by means of scanning electron microscopy (SEM) and metallographic microscopy, and the cause of the pores is analyzed. The results show that the porosity decreases with the increase of the pulse current. When the pulse current is 160 A, the pores are the fewest and smallest, and the porosity is only 0.1%. The porosity of the sealing layer decreases first and then increases with the increase of the pulse duration time. The porosity decreases first and then increases with the increase of the pulse frequency. When the pulse frequency is 18 Hz, the porosity is the least, at only 0.08%. The porosity of the sealing layer increases with the increase of the welding speed. When the welding speed is 80, 90, 100 and 110 mm/min, the porosity is 0.02, 0.08, 0.63 and 0.89%, respectively. These studies can provide a theoretical basis for laser sealing manufacturing of vacuum plate glazing.
机译:为了探索在激光焊接的真空板玻璃密封层中形成孔的机理,进行了真空板玻璃激光侧密封试验。通过扫描电子显微镜(SEM)和金相显微镜研究了脉冲电流,脉冲持续时间,脉冲频率和焊接速度对密封层孔的影响,并分析了造成孔的原因。结果表明,孔隙率随脉冲电流的增加而减小。当脉冲电流为160 A时,孔最少,最小,孔隙率仅为0.1%。密封层的孔隙率首先随着脉冲持续时间的增加而减小,然后增加。孔隙率先降低,然后随着脉冲频率的增加而增加。当脉冲频率为18 Hz时,孔隙率最小,仅为0.08%。密封层的孔隙率随着焊接速度的增加而增加。当焊接速度为80、90、100和110mm / min时,孔隙率分别为0.02、0.08、0.63和0.89%。这些研究可以为真空平板玻璃的激光密封生产提供理论依据。

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