Thermal Effects in Single-Point Curing Process for Pulsed Infrared Laser-Assisted 3D Printing of Optics
Z. X. Li,Z. H. Hong,Y. Xiao,Q. Hao and R. G. Liang
刊名3d Printing and Additive Manufacturing
2020
卷号7期号:4页码:151-161
ISSN号2329-7662
DOI10.1089/3dp.2020.0023
英文摘要Additive manufacturing (AM) process is an ideal way to rapidly prototype freeform optics. We present a new precision additive freeform optics manufacturing (AFOM) method using pulsed infrared laser to thermally cure optical silicones. To achieve the tight optical surface requirements, the curing volume pixel (voxel) of the AM process should be precisely controlled. We have developed an opto-thermal-chemical-coupled multiphysics model to simulate the curing process and predict the shape and size of cured polymer. Single-point curing experiments were conducted using a Q-switched fiber laser with an average power of 10 W and a repetition rate at 30 kHz. Numerical simulation shows a good agreement with the experiments, showing a path for a theoretically guided design of a high-precision AFOM process.
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语种英语
内容类型期刊论文
源URL[http://ir.ciomp.ac.cn/handle/181722/64957]  
专题中国科学院长春光学精密机械与物理研究所
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Z. X. Li,Z. H. Hong,Y. Xiao,Q. Hao and R. G. Liang. Thermal Effects in Single-Point Curing Process for Pulsed Infrared Laser-Assisted 3D Printing of Optics[J]. 3d Printing and Additive Manufacturing,2020,7(4):151-161.
APA Z. X. Li,Z. H. Hong,Y. Xiao,Q. Hao and R. G. Liang.(2020).Thermal Effects in Single-Point Curing Process for Pulsed Infrared Laser-Assisted 3D Printing of Optics.3d Printing and Additive Manufacturing,7(4),151-161.
MLA Z. X. Li,Z. H. Hong,Y. Xiao,Q. Hao and R. G. Liang."Thermal Effects in Single-Point Curing Process for Pulsed Infrared Laser-Assisted 3D Printing of Optics".3d Printing and Additive Manufacturing 7.4(2020):151-161.
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