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Digital Micromirror Device Based Microstereolithography for Micro Structures of Transparent Photopolymer and Nanocomposites

机译:基于数字微镜器件的微球刻,用于微结构透明光聚合物和纳米复合材料

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This paper describes a Digital Micromirror Device (DMD) based ultraviolet (UV) microstereolithography (μ-SL) system developed for rapid prototyping and manufacturing of micro 3D structures. Characterization experiments show that the developed the DMD-based imaging system irradiates an entire photopolymer layer at once, providing reasonable curing speed and good resolution at a low cost. 2D and 3D micro parts were fabricated. High frequency ultrasonic vibration (above 20 kHz) was experimented and verified that it can be used to significantly decrease the leveling time of viscous photopolymer. Furthermore, micro parts were also fabricated in nanocomposites, which were obtained by ultrasonic mixing of the transparent photopolymer and nano-sized ceramic particles. High quality micro models fabricated by this novel process could be used for micro scale investment casting, tooling, devices, and medical applications.
机译:本文介绍了一种基于数字微镜装置(DMD)的紫外(UV)MicrostEropore(μ-SL)系统,用于快速原型制造和微3D结构的制造。表征实验表明,开发的基于DMD的成像系统一次照射整个光聚合物层,以低成本提供合理的固化速度和良好分辨率。 2D和3D微零件是制造的。实验高频超声波振动(20kHz以上)并验证可用于显着降低粘性光聚合物的平整时间。此外,通过纳米复合材料制造微零件,通过超声波混合而获得透明光聚合物和纳米尺寸的陶瓷颗粒。通过这种新工艺制造的优质微型模型可用于微尺度投资铸造,工具,设备和医疗应用。

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