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Micromachining of Transparent Biocompatible Polymers Applied in Medicine Using Bursts of Femtosecond Laser Pulses

机译:使用飞秒激光脉冲爆发在医学中施加透明生物相容性聚合物的微机械线

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摘要

Biocompatible polymers are used for many different purposes (catheters, artificial heart components, dentistry products, etc.). An important field for biocompatible polymers is the production of vision implants known as intraocular lenses or custom-shape contact lenses. Typically, curved surfaces are manufactured by mechanical means such as milling, turning or lathe cutting. The 2.5 D objects/surfaces can also be manufactured by means of laser micromachining; however, due to the nature of light–matter interaction, it is difficult to produce a surface finish with surface roughness values lower than ~1 µm Ra. Therefore, laser micromachining alone can’t produce the final parts with optical-grade quality. Laser machined surfaces may be polished via mechanical methods; however, the process may take up to several days, which makes the production of implants economically challenging. The aim of this study is the investigation of the polishing capabilities of rough (~1 µm Ra) hydrophilic acrylic surfaces using bursts of femtosecond laser pulses. By changing different laser parameters, it was possible to find a regime where the surface roughness can be minimized to 18 nm Ra, while the polishing of the entire part takes a matter of seconds. The produced surface demonstrates a transparent appearance and the process shows great promise towards commercial fabrication of low surface roughness custom-shape optics.
机译:生物相容性聚合物用于许多不同的目的(导管,人造心脏成分,牙科产品等)。生物相容性聚合物的一个重要领域是作为人工晶状体或定制形状隐形眼镜的视觉植入物的产生。通常,弯曲表面通过机械装置制造,例如研磨,转动或车床切割。 2.5 D物体/表面也可以通过激光微机械制造;然而,由于光物质相互作用的性质,难以产生表面粗糙度值低于〜1μm的表面光洁度。因此,单独的激光微加工不能产生具有光学级质量的最终部件。可以通过机械方法抛光激光加工表面;然而,该过程可能需要多达几天,这使得植入物的生产经济上具有挑战性。本研究的目的是使用飞秒激光脉冲突发研究粗糙(〜1μmra)亲水性丙烯酸表面的抛光能力。通过改变不同的激光参数,可以找到可以将表面粗糙度最小化到18nm Ra的状态,而整个部件的抛光需要几秒钟。所产生的表面展示了透明的外观,并且该过程对低表面粗糙度定制光学器件的商业制造具有很大的通知。

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