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Rapid Prototyping of Glass Microfluidic Devices using Femtosecond Laser Pulses

机译:使用飞秒激光脉冲对玻璃微流控设备进行快速原型设计

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Laser micromachining technology with 150 femtosecond pulses is developed to fabricate glass microfluidic devices. A short theoretical analysis of femtosecond laser ablation is reported to characterize the femtosecond laser micromachining. The ablated crater diameter is measured as a function of the number of laser pulses as well as laser fluence. Two different ablation regimes are observed and the transition between the regimes is dependent on both the laser fluence and the number of laser shots. Based on the ablation phenomena described, microfluidic devices are fabricated with commercially available soda lime glasses (76 mm x 26 mm x 1 mm, Knittel Glaser, Germany). In addition to a microchannel for microfluidics, the capillary as well as optical fiber for detecting is integrated on the same substrate. The substrate is successively packaged with a lid slide glass by a thermal direct bonding. The presented developments are suitable for fast turn-around design cycle and inexpensive procedure, which provide rapid prototyping of MEMS devices.
机译:具有150飞秒脉冲的激光微加工技术已被开发出来,用于制造玻璃微流体设备。据报道,对飞秒激光烧蚀进行了简短的理论分析,以表征飞秒激光微加工。烧蚀后的坑口直径是根据激光脉冲数量以及激光通量来测量的。观察到两种不同的消融方案,并且方案之间的过渡取决于激光通量和激光发射次数。基于所述的烧蚀现象,用市售的钠钙玻璃(76mm×26mm×1mm,Knittel Glaser,德国)制造微流体装置。除了用于微流体的微通道外,毛细管以及用于检测的光纤都集成在同一基板上。基板通过热直接粘合依次与盖玻片一起包装。提出的开发适用于快速周转的设计周期和廉价的过程,可提供MEMS器件的快速原型。

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