TOM 1 - Silicon Photonics and Guided-Wave Optics
TOM 2 - Computational, Adaptive and Freeform Optics
TOM 3 - Optical System Design, Tolerancing and Manufacturing
TOM 4 - Bio-Medical Optics
TOM 5 - Resonant Nanophotonics
TOM 6 - Optical Materials: crystals, thin films, organic molecules and polymers, syntheses, characterization and devices
TOM 7 - Thermal radiation and energy management
TOM 8 - Nonlinear and Quantum Optics
TOM 9 - Optics at Nanoscale (ONS)
TOM 10 - Optical Microsystems (OMS)
TOM 11 - Waves in Complex Photonic Media
TOM 12 - Optofluidics
TOM 13 - Ultrafast Optical Technologies and Applications
TOM 14 - Advances and Applications of Optics and Photonics
EU Project Session
Early Stage Researcher Session organised by SIOF
Grand Challenges of Photonics Session
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Please note that all times are shown in the time zone of the conference. The current conference time is: 29th June 2022, 09:01:29 CEST
TOM3 S06: Optical System Design, Tolerancing and Manufacturing
Time:
Wednesday, 15/Sept/2021:
11:15 - 12:45
Session Chair: Daewook Kim, University of Arizona, United States of America
Location:Aula 9 1st Floor
Presentations
11:15 - 11:45 Invited ID: 318 / TOM3 S06: 1 TOM 3 Optical System Design, Tolerancing and Manufacturing
A precise (or is it accurate?) introduction to:- Accuracy and Precision
David Walker
University of Huddersfield, United Kingdom
Analysis of approaches to raise precision and accuracy in optics systems generation to higher levels
11:45 - 12:00 ID: 313 / TOM3 S06: 2 TOM 3 Optical System Design, Tolerancing and Manufacturing
Manufacturing risk management in optical design
Oliver Faehnle1, Irina Livshits2
1OST University of Applierd Sciences, Buchs; 2ITMO University, St.Petersburg, Russia
see attached file
12:00 - 12:15 ID: 311 / TOM3 S06: 3 TOM 3 Optical System Design, Tolerancing and Manufacturing
Menhir approach in SSD-testing for micro-optical elements
Christian Vogt2, Oliver Faehnle1, Jens Bliedtner3
1OST - Applied University Buchs; 2Technical University of Deggendorf; 3EAH Applied University, Jena
see attached word file
12:15 - 12:30 ID: 157 / TOM3 S06: 4 TOM 3 Optical System Design, Tolerancing and Manufacturing
Experimental results from face and lateral fine grinding of fused silica and BK7 using metal and resin bonded tools
Christian Schulze, Sebastian Henkel, Jens Bliedtner
Ernst-Abbe University of Applied Sciences Jena, Germany
The experimental setup compares face grinding with lateral grinding in a single processing step using fused silica and BK7. Resin and metal bonded tools are used in face and lateral grinding strategies. The paper presents the results in order to deepen the knowledge about those grinding technologies and to further improve the properties of fabricated components. The results confirm, that ultra-fine grinding is a technology, which can be used to process inorganic non-metallic materials with high quality surfaces with a low roughness and high flatness in a low processing time.