Analysis and Research on Graphical Distortion of LCD SLA technology

碩士 === 國立臺灣科技大學 === 機械工程系 === 106 === This study is mainly aimed at reducing the accuracy of the printed object features and the poor edge sharpness when using the LCD panel in Vat Polymerization technology. (This 3D printing system uses the LCD panel on the mobile phone to project the sliced image...

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Main Authors: Tzu-Heng Chang, 張子恒
Other Authors: Jeng-Ywan Jeng
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/uf65g9
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spelling ndltd-TW-106NTUS54891632019-05-16T00:59:41Z http://ndltd.ncl.edu.tw/handle/uf65g9 Analysis and Research on Graphical Distortion of LCD SLA technology LCD光固化中對於圖形化的失真分析與研究 Tzu-Heng Chang 張子恒 碩士 國立臺灣科技大學 機械工程系 106 This study is mainly aimed at reducing the accuracy of the printed object features and the poor edge sharpness when using the LCD panel in Vat Polymerization technology. (This 3D printing system uses the LCD panel on the mobile phone to project the sliced image file to the resin tank. At the bottom, for the photo-curing 3D printing of the down-light type), in order to understand the cause of this phenomenon more intuitively, other applications such as other commercial down-lit LCD columns are compared to other applications of Vat Polymerization technology. In the printing machine, the biggest difference is the light divergence angle. The light divergence angle refers to the viewing angle of the LCD panel. In applications other than 3D printing, the higher the viewing angle, the better. However, in 3D printing, the height is high. The viewing angle means a high divergence angle, which leads to a lack of concentration of energy diffusion, resulting in reduced accuracy. In order to improve the accuracy reduction problem, this study simulates with matlab, allowing researchers to understand the interaction between exposure pattern, light divergence angle and resin curing range. Previous studies [16] and [17] have shown that the radiated power radiated from the LCD panel by a single pixel exhibits a Gaussian distribution. In order to obtain the radiant power of the LCD panel, the "integral sphere" is used. The standard calibration source is measured, and the Radiant flux is divided by the panel area or panel resolution to obtain the parameters required for the simulation. Finally, the test block is printed and the model is fine-tuned, and then the test block is corrected and printed according to the simulation result. The corrected printing result indicates that the corner portion of the feature graphic in the test block is corrected, and the dimensional precision is high, and the edge is obtained. Sharp print items. Jeng-Ywan Jeng 鄭正元 2018 學位論文 ; thesis 110 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣科技大學 === 機械工程系 === 106 === This study is mainly aimed at reducing the accuracy of the printed object features and the poor edge sharpness when using the LCD panel in Vat Polymerization technology. (This 3D printing system uses the LCD panel on the mobile phone to project the sliced image file to the resin tank. At the bottom, for the photo-curing 3D printing of the down-light type), in order to understand the cause of this phenomenon more intuitively, other applications such as other commercial down-lit LCD columns are compared to other applications of Vat Polymerization technology. In the printing machine, the biggest difference is the light divergence angle. The light divergence angle refers to the viewing angle of the LCD panel. In applications other than 3D printing, the higher the viewing angle, the better. However, in 3D printing, the height is high. The viewing angle means a high divergence angle, which leads to a lack of concentration of energy diffusion, resulting in reduced accuracy. In order to improve the accuracy reduction problem, this study simulates with matlab, allowing researchers to understand the interaction between exposure pattern, light divergence angle and resin curing range. Previous studies [16] and [17] have shown that the radiated power radiated from the LCD panel by a single pixel exhibits a Gaussian distribution. In order to obtain the radiant power of the LCD panel, the "integral sphere" is used. The standard calibration source is measured, and the Radiant flux is divided by the panel area or panel resolution to obtain the parameters required for the simulation. Finally, the test block is printed and the model is fine-tuned, and then the test block is corrected and printed according to the simulation result. The corrected printing result indicates that the corner portion of the feature graphic in the test block is corrected, and the dimensional precision is high, and the edge is obtained. Sharp print items.
author2 Jeng-Ywan Jeng
author_facet Jeng-Ywan Jeng
Tzu-Heng Chang
張子恒
author Tzu-Heng Chang
張子恒
spellingShingle Tzu-Heng Chang
張子恒
Analysis and Research on Graphical Distortion of LCD SLA technology
author_sort Tzu-Heng Chang
title Analysis and Research on Graphical Distortion of LCD SLA technology
title_short Analysis and Research on Graphical Distortion of LCD SLA technology
title_full Analysis and Research on Graphical Distortion of LCD SLA technology
title_fullStr Analysis and Research on Graphical Distortion of LCD SLA technology
title_full_unstemmed Analysis and Research on Graphical Distortion of LCD SLA technology
title_sort analysis and research on graphical distortion of lcd sla technology
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/uf65g9
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