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Laser micromachining of the materials using in microfluidics by high precision pulsed near and mid-ultraviolet Nd:YAG lasers

机译:高精度脉冲近和中紫外Nd:YAG激光在微流控中对材料进行激光微加工

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摘要

Both near-ultraviolet (UV) laser and mid-UV laser micromachining on materials have been investigated systematically. The materials used in this research are sapphire, silicon, and Pyrex glass that are commonly used in microfluidic applications. Cutting, marking and surface ablation of those materials have been produced by direct writing using a high-speed x-y galvanomechanical beam positioner. Laser ablation results, including ablation rate and precision, are discussed. The results show that the both ablation rate and precision of laser micromachining depend on several factors, including focus length, beam feed rate (cutting speed), the pulse repetition rate and the absorption coefficient of the materials. The result indicates that the laser ablation process of these materials could be a mixed of photothermal and photochemical processes when using a near nanosecond pulse laser. The UV (355 nm) laser micromachining process, however, appears to be dominated by a photothermal process than those of mid-UV (266 nm) laser.
机译:系统地研究了材料上的近紫外(UV)激光和中紫外(UV)激光微加工。本研究中使用的材料是蓝宝石,硅和派热克斯玻璃,它们通常用于微流体应用。这些材料的切割,打标和表面烧蚀已通过使用高速x-y电动机械光束定位器直接书写来完成。讨论了激光烧蚀的结果,包括烧蚀率和精度。结果表明,激光微加工的烧蚀率和精度均取决于焦距,光束进给速度(切削速度),脉冲重复频率和材料的吸收系数等因素。结果表明,当使用近纳秒脉冲激光时,这些材料的激光烧蚀过程可能是光热和光化学过程的混合。然而,与中紫外(266 nm)激光相比,紫外(355 nm)激光微加工工艺似乎受光热工艺控制。

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