Additive manufacturing of transparent fused quartz
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Augustine Urbas | Edward C. Kinzel | Robert G. Landers | Douglas A. Bristow | Jonathan T. Goldstein | Junjie Luo | John M. Hostetler | Luke J. Gilbert | D. Bristow | R. Landers | E. Kinzel | A. Urbas | Junjie Luo | J. Goldstein | L. Gilbert
[1] R. B. Hall,et al. High‐Power Laser Radiation Interaction with Quartz , 1970 .
[2] Adam C. Urness,et al. Liquid deposition photolithography for submicrometer resolution three-dimensional index structuring with large throughput , 2013, Light: Science & Applications.
[3] Seth R. Marder,et al. Materials for Multiphoton 3D Microfabrication , 2007 .
[4] Evgeny B. Yakovlev,et al. Laser technologies for micro-optics fabrication , 1993, Photonics West - Lasers and Applications in Science and Engineering.
[5] Manyalibo J. Matthews,et al. Thermal transport in CO2 laser irradiated fused silica: In situ measurements and analysis , 2009 .
[6] Toshiki Niino,et al. Fabrication of Transparent Parts by Laser Sintering Process , 2009 .
[7] Mark A. Ganter,et al. The guide to glass 3D printing: developments, methods, diagnostics and results , 2011 .
[8] S. Qiu,et al. Heating dynamics of CO2-laser irradiated silica particles with evaporative shrinking: Measurements and modeling , 2011 .
[9] W. Bauer,et al. Three-dimensional printing of transparent fused silica glass , 2017, Nature.
[10] OxmanNeri,et al. Additive Manufacturing of Optically Transparent Glass , 2015 .
[11] Shreya H Dave,et al. Additive Manufacturing of Optically Transparent Glass , 2015 .
[12] Ivan Poupyrev,et al. PAPILLON: designing curved display surfaces with printed optics , 2013, UIST.
[13] Ivan Poupyrev,et al. Printed optics: 3D printing of embedded optical elements for interactive devices , 2012, UIST.
[14] Wojciech Matusik,et al. Computational Light Routing , 2014, ACM Trans. Graph..
[15] F. Klocke,et al. Direct Laser Sintering of Borosilicate Glass , 2004 .
[16] Laurent Pilon,et al. Optical constants of silica glass from extreme ultraviolet to far infrared at near room temperature. , 2007, Applied optics.
[17] D. Bristow,et al. Additive Manufacturing of Transparent Soda-Lime Glass Using a Filament-Fed Process , 2017 .
[18] Eduardo Saiz,et al. Bioinspired Strong and Highly Porous Glass Scaffolds , 2011, Advanced functional materials.
[19] Rebecca Dylla-Spears,et al. 3D‐Printed Transparent Glass , 2017, Advanced materials.
[20] Andrey V. Gusarov,et al. Crack-free selective laser melting of silica glass: single beads and monolayers on the substrate of the same material , 2016 .
[21] Andreas Gebhardt,et al. Selective Laser Melting of Soda-Lime Glass Powder , 2015 .
[22] Augustine Urbas,et al. Bubble formation in additive manufacturing of glass , 2016, SPIE Defense + Security.
[23] Marvin J. Weber,et al. Handbook of Optical Materials , 2002 .
[24] V P Veiko,et al. LASER TECHNOLOGIES: Laser amorphisation of glass ceramics: basic properties and new possibilities for manufacturing microoptical elements , 2007 .