Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish

A.N. Shrotri, S. Preu, O. Stübbe, Coatings : Open Access Journal 15 (2025).

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Zeitschriftenaufsatz (wiss.) | Veröffentlicht | Englisch
Abstract
Additive manufacturing of optical, electrical, and mechanical components is a beneficial approach for the rapid prototyping of components and error elimination, with short turnaround times. However, additively manufactured components usually have rough surfaces that need post-processing, particularly for optical components, where the surface roughness must be a small fraction of the wavelength. We demonstrate an innovative and economical approach by dip-coating with the same resin used for printing in a simple post-processing step, providing high transparency to the 3D-printed optical components and reducing surface roughness while achieving perfect index matching of the coating layer. The surface roughness of the 3D-printed optical components drops to 5 nm (arithmetic average) after the dip-coating process. We observed significant performance enhancements after comparing the unprocessed optical components and the dip-coated optical components, including optical transparency and a shiny surface finish for previously rough surfaces.
Erscheinungsjahr
Zeitschriftentitel
Coatings : open access journal
Band
15
Zeitschriftennummer
2
Artikelnummer
210
ISSN
ELSA-ID

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Shrotri AN, Preu S, Stübbe O. Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish. Coatings : open access journal. 2025;15(2). doi:10.3390/coatings15020210
Shrotri, A. N., Preu, S., & Stübbe, O. (2025). Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish. Coatings : Open Access Journal, 15(2), Article 210. https://doi.org/10.3390/coatings15020210
Shrotri AN, Preu S and Stübbe O (2025) Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish. Coatings : open access journal 15.
Shrotri, Abhijeet Narendra, Sascha Preu, and Oliver Stübbe. “Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish.” Coatings : Open Access Journal 15, no. 2 (2025). https://doi.org/10.3390/coatings15020210.
Shrotri, Abhijeet Narendra, Sascha Preu und Oliver Stübbe. 2025. Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish. Coatings : open access journal 15, Nr. 2. doi:10.3390/coatings15020210, .
Shrotri, Abhijeet Narendra ; Preu, Sascha ; Stübbe, Oliver: Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish. In: Coatings : open access journal Bd. 15. Basel, MDPI AG (2025), Nr. 2
A.N. Shrotri, S. Preu, O. Stübbe, Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish, Coatings : Open Access Journal. 15 (2025).
A. N. Shrotri, S. Preu, and O. Stübbe, “Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish,” Coatings : open access journal, vol. 15, no. 2, Art. no. 210, 2025, doi: 10.3390/coatings15020210.
Shrotri, Abhijeet Narendra, et al. “Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish.” Coatings : Open Access Journal, vol. 15, no. 2, 210, 2025, https://doi.org/10.3390/coatings15020210.
Shrotri, Abhijeet Narendra/Preu, Sascha/Stübbe, Oliver: Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish, in: Coatings : open access journal 15 (2025), H. 2.
Shrotri AN, Preu S, Stübbe O. Achieving Transparency and Minimizing Losses of Rough Additively Manufactured Optical Components by a Dip-Coating Surface Finish. Coatings : open access journal. 2025;15(2).

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