{"abstract":[{"text":"This paper proposes an innovative approach of manufacturing optical fibers using nozzle-mask-aided additive manufacturing. Nozzle-masks ease 3D-printing of optical fibers allowing the manufacturing or drawing of optical fibers of up to 10 μm diameter. These nozzle-masks feature a suction mechanism to prevent clogging of printhead and mask. The extrusion of Polymethyl-methacrylate material through the print-head and nozzle-mask simplifies the rapid prototyping of the optical fibers. ","lang":"eng"}],"citation":{"havard":"A.N. Shrotri, C. Wittenbröker, S. Preu, O. Stübbe, Design and simulation of a nozzle-mask for optical fiber 3D-printing, SPIE, Bellingham, Washington, USA, 2024.","apa":"Shrotri, A. N., Wittenbröker, C., Preu, S., & Stübbe, O. (2024). Design and simulation of a nozzle-mask for optical fiber 3D-printing. In G. von Freymann, A. M. Herkommer, & M. Flury (Eds.), 3D Printed Optics and Additive Photonic Manufacturing IV (Vol. 12995, p. 12995 0A). SPIE. https://doi.org/10.1117/12.3017000","din1505-2-1":"Shrotri, Abhijeet Narendra ; Wittenbröker, Christian ; Preu, Sascha ; Stübbe, Oliver ; von Freymann, G. ; Herkommer, A. M. ; Flury, M. (Hrsg.): Design and simulation of a nozzle-mask for optical fiber 3D-printing, Proceedings of SPIE. Bd. 12995. Bellingham, Washington, USA : SPIE, 2024","chicago-de":"Shrotri, Abhijeet Narendra, Christian Wittenbröker, Sascha Preu und Oliver Stübbe. 2024. Design and simulation of a nozzle-mask for optical fiber 3D-printing. Hg. von Georg von Freymann, Alois M. Herkommer, und Manuel Flury. 3D Printed Optics and Additive Photonic Manufacturing IV. Bd. 12995. Proceedings of SPIE. Bellingham, Washington, USA: SPIE. doi:10.1117/12.3017000, .","chicago":"Shrotri, Abhijeet Narendra, Christian Wittenbröker, Sascha Preu, and Oliver Stübbe. Design and Simulation of a Nozzle-Mask for Optical Fiber 3D-Printing. Edited by Georg von Freymann, Alois M. Herkommer, and Manuel Flury. 3D Printed Optics and Additive Photonic Manufacturing IV. Vol. 12995. Proceedings of SPIE. Bellingham, Washington, USA: SPIE, 2024. https://doi.org/10.1117/12.3017000.","ama":"Shrotri AN, Wittenbröker C, Preu S, Stübbe O. Design and Simulation of a Nozzle-Mask for Optical Fiber 3D-Printing. Vol 12995. (von Freymann G, Herkommer AM, Flury M, eds.). SPIE; 2024:12995 0A. doi:10.1117/12.3017000","bjps":"Shrotri AN et al. (2024) Design and Simulation of a Nozzle-Mask for Optical Fiber 3D-Printing, von Freymann G, Herkommer AM and Flury M (eds). Bellingham, Washington, USA: SPIE.","ieee":"A. N. Shrotri, C. Wittenbröker, S. Preu, and O. Stübbe, Design and simulation of a nozzle-mask for optical fiber 3D-printing, vol. 12995. Bellingham, Washington, USA: SPIE, 2024, p. 12995 0A. doi: 10.1117/12.3017000.","ufg":"Shrotri, Abhijeet Narendra u. a.: Design and simulation of a nozzle-mask for optical fiber 3D-printing, Bd. 12995, hg. von Freymann, Georg von/Herkommer, Alois M./Flury, Manuel, Bellingham, Washington, USA 2024 (Proceedings of SPIE).","mla":"Shrotri, Abhijeet Narendra, et al. “Design and Simulation of a Nozzle-Mask for Optical Fiber 3D-Printing.” 3D Printed Optics and Additive Photonic Manufacturing IV, edited by Georg von Freymann et al., vol. 12995, SPIE, 2024, p. 12995 0A, https://doi.org/10.1117/12.3017000.","short":"A.N. Shrotri, C. Wittenbröker, S. Preu, O. Stübbe, Design and Simulation of a Nozzle-Mask for Optical Fiber 3D-Printing, SPIE, Bellingham, Washington, USA, 2024.","van":"Shrotri AN, Wittenbröker C, Preu S, Stübbe O. Design and simulation of a nozzle-mask for optical fiber 3D-printing. von Freymann G, Herkommer AM, Flury M, editors. 3D Printed Optics and Additive Photonic Manufacturing IV. Bellingham, Washington, USA: SPIE; 2024. (Proceedings of SPIE; vol. 12995)."},"author":[{"orcid":"0000-0003-2116-156X","id":"74090","last_name":"Shrotri","full_name":"Shrotri, Abhijeet Narendra","first_name":"Abhijeet Narendra"},{"first_name":"Christian","full_name":"Wittenbröker, Christian","last_name":"Wittenbröker","id":"83111"},{"last_name":"Preu","full_name":"Preu, Sascha","first_name":"Sascha"},{"first_name":"Oliver","orcid":"https://orcid.org/0000-0001-7293-6893","id":"51864","full_name":"Stübbe, Oliver","last_name":"Stübbe"}],"status":"public","publisher":"SPIE","editor":[{"first_name":"Georg","last_name":"von Freymann","full_name":"von Freymann, Georg"},{"first_name":"Alois M.","last_name":"Herkommer","full_name":"Herkommer, Alois M."},{"first_name":"Manuel","full_name":"Flury, Manuel","last_name":"Flury"}],"volume":12995,"date_created":"2024-06-24T08:16:25Z","type":"conference_editor_article","year":"2024","user_id":"74090","series_title":"Proceedings of SPIE","publication_identifier":{"issn":["0277-786X "],"eisbn":["9781510673090"],"eissn":["1996-756X "],"isbn":["9781510673083"]},"_id":"11594","publication_status":"published","title":"Design and simulation of a nozzle-mask for optical fiber 3D-printing","publication":"3D Printed Optics and Additive Photonic Manufacturing IV","department":[{"_id":"DEP5020"},{"_id":"DEP6020"}],"conference":{"name":"3D Printed Optics and Additive Photonic Manufacturing IV","start_date":"2024-04-08","end_date":"2024-04-09","location":"Strasbourg"},"language":[{"iso":"eng"}],"intvolume":" 12995","doi":"10.1117/12.3017000","page":"12995 0A","date_updated":"2024-10-08T07:41:38Z","place":"Bellingham, Washington, USA"}