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Fabrication of a light-intensity-enhancement component by using computer-controlled ultraviolet curing and air-pressing imprinting

机译:通过使用计算机控制的紫外线固化和空气压力压印制造光强度增强分量

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摘要

In this study, the ultraviolet (UV) curing and air pressure imprinting methods are proposed for the fabrication of a light-intensity-enhancement component. The air-pressing process provides a uniform embossing pressure, and the UV curing module enables the process to be performed at room temperature and low pressure. Because the UV resin is sensitive to the process parameters, such as the curing time and pressing pressure, the liquid resin must be filled at a precise pressure. To control the precision, the UV embossing facility comprised a resin-dispensing system, air-pressing system, and UV curing system. These systems were controlled by the Arduino system. In the Arduino system, the computer-controlled input can eliminate artificial errors and each forming step can be programed into one script to achieve automation. In this study, V-groove microstructures were formed. The V-groove pattern was replicated with a width of 47m and height of 22m on polymethyl methacrylate substrate for use as a light guiding panel. The proposed methodology enables automatic control of the UV microscale imprinting process.
机译:在该研究中,提出了紫外(UV)固化和空气压力压印方法,用于制造光强度增强组分。空气按压工艺提供均匀的压花压力,UV固化模块使得在室温和低压下进行该过程。因为UV树脂对工艺参数敏感,例如固化时间和压力,因此必须以精确的压力填充液体树脂。为了控制精度,UV压花设施包括树脂分配系统,空气压力系统和UV固化系统。这些系统由Arduino系统控制。在Arduino系统中,计算机控制的输入可以消除人为错误,并且每个形成步骤可以被编程到一个脚本中以实现自动化。在该研究中,形成V-沟槽微结构。在聚甲基丙烯酸甲酯基材上以47米和22m的高度为47米和22m的宽度,用作光导板。所提出的方法能够自动控制UV Microscale压印过程。

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