首页> 外文会议>International Conference on Advanced Manufacture >FABRICATION AND CHARACTERIZATION OF 3D ASPHERIC MICROLENSES WITH ARBITRARY SURFACE PROFILES BASED ON A NOVEL EXCIMER LASER CONTOUR SCANNING METHOD
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FABRICATION AND CHARACTERIZATION OF 3D ASPHERIC MICROLENSES WITH ARBITRARY SURFACE PROFILES BASED ON A NOVEL EXCIMER LASER CONTOUR SCANNING METHOD

机译:基于新型准分子激光轮廓扫描方法的任意表面型材的3D非球面微透镜的制造与表征

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This paper presents a new method for fabricating 3D microstructures with an excimer laser micromachining system. A novel mask contour scanning method is developed for obtaining precise 3D microstructures with pre-described continuous surface profile. Two different microlenses with spherical and aspheric surfaces profiles with dimension less than 200 urn are fabricated on polycarbonate (PC) samples. The surface profiles are measured and compared with their theoretical counterparts. Excellent agreements both in profile shapes and dimensions are achieved. The surface roughness (Ra) of the machined surfaces is also measured and is less than 10 nm. The machining profile accuracy and surface smoothness of this proposed micromachining method show great potentials in fabricating micro-optic components such as aspheric microlenses or microlens arrays.
机译:本文介绍了用准分子激光微机械系统制造3D微观结构的新方法。开发了一种新型掩模轮廓扫描方法,用于获得具有预先描述的连续表面轮廓的精确3D微结构。两种不同的微透镜用球形和非球面曲线尺寸尺寸的剖面,在聚碳酸酯(PC)样品上制造。测量表面轮廓并与其理论对应物进行比较。实现了型材形状和尺寸的良好协议。也测量加工表面的表面粗糙度(Ra)并且小于10nm。该提出的微机械化方法的加工轮廓精度和表面平滑度在制造微型光学元件(例如非球面微透镜或微透镜阵列)方面具有很大的潜力。

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