@inproceedings{190909c68e0443e69547a1e7b503f4f4,
title = "Hybrid-light-source stereolithography for fabricating macro-objects with micro-textures",
abstract = "Microscale surface structures are commonly found on macroscale bodies of natural creatures for their unique functions. However, it is difficult to fabricate such multi-scale geometry with conventional stereolithography processes that rely on either laser or digital micromirror device (DMD). More specifically, the DMD-based mask projection method displays the image of a cross-section of the part on the resin to fabricate the entire layer efficiently; however, its display resolution is limited by the building area. In comparison, the laser-based vector scanning method builds smooth features using a focused laser beam with desired beam-width resolution; however, it has less throughput for its sequential nature. In this paper, we studied the hybrid-light-source stereolithography process that integrates both optical light sources to facilitate the fabrication of macro-objects with microscale surface structures (called micro-textures in the paper). The hardware system uses a novel calibration approach that ensures pixel-level dimensional accuracy across the two light sources. The software system enables designing the distribution and density of specific microscale textures on a macro-object by generating projection images and laser toolpaths for the two integrated light sources. Several test cases were fabricated to demonstrate the capability of the developed process. A large fabrication area (76.8 mm × 80.0 mm) with 50 µm micro-features can be achieved with a high throughput.",
keywords = "Additive manufacturing, Calibration, Hybrid-system, Micro-texture, Multi-scale, Stereolithography",
author = "Wenxuan Jia and Leung, \{Yuen Shan\} and Huachao Mao and Han Xu and Chi Zhou and Yong Chen",
note = "Publisher Copyright: Copyright {\textcopyright} 2021 by ASME; ASME 2021 16th International Manufacturing Science and Engineering Conference, MSEC 2021 ; Conference date: 21-06-2021 Through 25-06-2021",
year = "2021",
doi = "10.1115/MSEC2021-63717",
language = "English",
series = "Proceedings of the ASME 2021 16th International Manufacturing Science and Engineering Conference, MSEC 2021",
publisher = "American Society of Mechanical Engineers",
booktitle = "Additive Manufacturing; Advanced Materials Manufacturing; Biomanufacturing; Life Cycle Engineering; Manufacturing Equipment and Automation",
}