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Direct welding of glass and metal by 1 kHz femtosecond laser pulses

机译:通过1 kHz飞秒激光脉冲直接焊接玻璃和金属

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摘要

In the welding process between similar or dissimilar materials, inserting an intermediate layer and pressure assistance are usually thought to be necessary. In this paper, the direct welding between alumina-silicate glass and metal (aluminum, copper, and steel), under exposure from 1 kHz femtosecond laser pulses without any auxiliary processes, is demonstrated. The micronanometer-sized metal particles induced by laser ablation were considered to act as the adhesive in the welding process. The welding parameters were optimized by varying the pulse energy and the translation velocity of the sample. The shear joining strength characterized by a shear force testing equipment was as high as 2.34 MPa. This direct bonding technology has potential for applications in medical devices, sensors, and photovoltaic devices. (C) 2015 Optical Society of America
机译:在相似或不相似材料之间的焊接过程中,通常认为需要插入中间层和压力辅助。在本文中,演示了在1 kHz飞秒激光脉冲的照射下,铝硅酸盐玻璃与金属(铝,铜和钢)之间的直接焊接,而没有任何辅助工艺。激光烧蚀引起的微米/纳米大小的金属颗粒被认为在焊接过程中起着粘合剂的作用。通过改变脉冲能量和样品的平移速度来优化焊接参数。由剪切力测试设备表征的剪切接合强度高达2.34MPa。这种直接粘合技术具有在医​​疗设备,传感器和光伏设备中的应用潜力。 (C)2015年美国眼镜学会

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