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Research on 3D Printing Color Image Processing of Micro-lens Combined with Micrographics

机译:微透镜结合显微图像的3D打印彩色图像处理研究

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摘要

Under the condition of naked eye observation, the micro-lens array could achieve 3D image effect with 360° panoramic depth, which made them an important developing direction of 3D printing technology. Currently, the original images of micro-lens 3D printing technology, designed by micrographics array and printed with spot-color, had the characteristics of poor 3D imaging effect, single color as well as gradation. In order to obtain excellent imaging effect, rich gradation, and colorful image, the method of 3D printing color image processing combined with micrographics arrays was proposed based on the micrographics array processing technology. Specifically, both of SPMG model and MG4CP model were constructed with combination of micrographics and color images, and the experimental scheme and process were designed. Then the original color images were screened with ordinary process, SPMG model and MG4CP model, respectively. The effects of original images were compared, and the feasibility of the two models was verified. The results showed that the MG4CP model had more advantages in image processing, effects reproduction, and printing.
机译:在裸眼观察的条件下,微透镜阵列可以在360°全景深度下实现3D图像效果,这使其成为3D打印技术的重要发展方向。目前,微透镜3D打印技术的原始图像是由显微图像阵列设计并以专色打印的,具有3D成像效果差,色彩单一,层次分明的特点。为了获得优异的成像效果,丰富的层次感和彩色图像,基于显微图像阵列处理技术,提出了结合显微图像阵列的3D打印彩色图像处理方法。具体地,结合显微图像和彩色图像构建了SPMG模型和MG4CP模型,并设计了实验方案和过程。然后分别用常规程序,SPMG模型和MG4CP模型对原始彩色图像进行筛选。比较了原始图像的效果,并验证了这两种模型的可行性。结果表明,MG4CP模型在图像处理,效果再现和打印方面具有更多优势。

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