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Laser scanning path generation considering photopolymer solidification in micro-stereolithography
Authors:Y. H. Cho  I. H. Lee  D.-W. Cho
Affiliation:(1) Research & Development Division, Hyundai Motor Company & Kia Motors Corporation, S. Korea;(2) Department of Mechanical Engineering, Chungbuk National University, 48, gaesin-dong, Cheongju, Chungbuk, S. Korea;(3) Department of Mechanical Engineering, Pohang University of Science and Technology, San 31, Hyo-ja dong, Nam-gu, Pohang, Kyungbuk, 790-784, S. Korea
Abstract:It is essential to automate the scanning path generation process to effectively implement the micro-stereolithography. However, a scanning path that is generated based only on a 3D CAD model introduces dimensional inaccuracies. In micro-stereolithography, the photopolymer solidification is affected by fabrication conditions, such as the optical properties (laser power, laser scanning speed, laser scanning pitch focusing condition, etc.) and material properties of the photopolymer. Thus, the photopolymer solidification phenomena must be considered when generating a laser scanning path. In this paper, a scanning path generation algorithm that uses 3D CAD data and considers the photopolymer solidification phenomena is proposed to improve the dimensional accuracy in micro-stereolithography. Multi-line photopolymer solidification experiments were performed for various laser scanning conditions to examine the photopolymer solidification phenomena. From these experiments, linear relations between the solidification length (width) and scanning length (width) were acquired and stored in a database. Subsequently, these data were utilized to compensate the scanning path of the laser beam. In addition, experiments for determining the layer thickness in the z-direction were performed and these results were also used in the scanning path generation algorithm.This research was supported by the Highly Advanced National Project (http://www.most.go.kr), which performs some of the National R&D Program, and sponsored by the Korean Ministry of Science and Technology under the contract project code M10214000116-02B1500-02010.
Keywords:scanning path generation  photopolymer Solidification  Micro-stereolithography  UV laser beam
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