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A novel stereolithography technology with conventional UV light

机译:具有常规紫外线的新型立体光刻技术

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摘要

Stereolithography (SL) is a kind of rapid prototyping technology which uses the laminate manufacturing to fabricate parts. With the development of RP, some new RP processes have boomed rapidly. Compact prototyping system (CPS) is a kind of novel stereolithography method which utilizes conventional UV light as the light source. After transmitting by optic fiber and focusing through lens set, the light is intensified and can be used to cure the photopolymer. Compared with the laser SL prototyping apparatus, this apparatus has unique characteristics on its driving system and light path system. Discusses the characteristics and corresponding consequences of the driving system and light path system, and analyzes the light energy distribution and the corresponding line shapes. Since each layer is constructed from a serial of lines, the scanning parameters, especially scanning speed and hatch gap, will influence the overall light intensity which determines the layer thickness, section shape and ultimately the prototyping accuracy. The driving system, due to the nonuniform moving speeds, could cause the shape error of the lines. A light shutter, keeping the light only illuminating on resin surface within given curing areas, is employed to solve this deficiency.
机译:立体光刻(SL)是一种快速成型技术,它使用层压板制造来制造零件。随着RP的发展,一些新的RP流程迅速发展起来。紧凑原型系统(CPS)是一种利用传统的紫外线作为光源的新颖的立体光刻方法。通过光纤传输并通过透镜组聚焦后,光被增强,可用于固化光敏聚合物。与激光SL原型设备相比,该设备在其驱动系统和光路系统上具有独特的特性。讨论了驱动系统和光路系统的特性和相应的后果,并分析了光能分布和相应的线形。由于每一层都是由一系列的线构成的,因此扫描参数,尤其是扫描速度和舱口间隙,将影响确定层厚度,截面形状并最终确定原型精度的整体光强度。由于移动速度不均匀,驱动系统可能会导致线条的形状误差。解决该缺陷的方法是使用光闸,使光仅照射在给定的固化区域内的树脂表面上。

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