首页> 外文期刊>Journal of Computing and Information Science in Engineering >A Novel Low-Cost Stereolithography Process Based on Vector Scanning and Mask Projection for High-Accuracy, High-Speed, High-Throughput, and Large-Area Fabrication
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A Novel Low-Cost Stereolithography Process Based on Vector Scanning and Mask Projection for High-Accuracy, High-Speed, High-Throughput, and Large-Area Fabrication

机译:基于矢量扫描和掩模投影的低成本低成本光刻技术,用于高精度,高速,高通量和大面积制造

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摘要

Photopolymerization based process is one of the most popular additive manufacturing (AM) processes. Two primary configurations for this process are laser based vector by vector scanning (0D) and projection based layer by layer exposing (2D). With the highly focused fine laser, the scanning based process can accomplish very high surface finishing and precision, however, due to the serial nature of scanning, this process suffers from the problem of slow speed. In contrast with laser scanning, projection based process can form the whole layer in one exposure, which leads to higher fabrication efficiency. However, due to the limited resolution of projection device and various optical defects, the surface quality will be significantly deteriorated for large area fabrication. To solve this problem, a novel hybrid process by integrating vector scanning and mask projection has been presented. In this process, laser is focused into a fine spot and used to scan the boundary of the layer, whereas the projector is focused onto a large platform surface and used to form the interior area of the layer. An efficient slicing method is proposed for extracting the contour for laser scanning. A slice to image conversion algorithm is also developed to convert the offset contour to grayscale image for mask projection. Experimental results have verified that the proposed hybrid process can significantly improve the fabrication speed without losing the surface quality.
机译:基于光聚合的工艺是最流行的增材制造(AM)工艺之一。此过程的两个主要配置是基于激光的矢量扫描矢量(0D)和基于投影的逐层曝光(2D)。使用高度聚焦的细激光,基于扫描的过程可以实现非常高的表面光洁度和精度,但是,由于扫描的串行特性,该过程存在速度慢的问题。与激光扫描相反,基于投影的过程可以一次曝光形成整个层,从而提高了制造效率。然而,由于投影装置的分辨率有限和各种光学缺陷,因此对于大面积制造而言,表面质量将显着降低。为了解决这个问题,已经提出了一种通过整合矢量扫描和掩模投影的新颖的混合过程。在此过程中,激光被聚焦到一个细小的斑点上,并用于扫描该层的边界,而投影仪被聚焦在一个较大的平台表面上,并用于形成该层的内部区域。提出了一种有效的切片方法,用于提取轮廓进行激光扫描。还开发了切片到图像的转换算法,以将偏移轮廓转换为用于掩模投影的灰度图像。实验结果证明,提出的混合工艺可以在不损失表面质量的情况下显着提高制造速度。

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