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Scaling-up freeform manufacturing: challenges and solutions
Author(s): Jen Coniglio; Matt Brunelle; Ian Ferralli; Brian Myer; Tim Lynch; Todd Blalock; Nick Quattrociocchi; Jessica DeGroote Nelson
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Paper Abstract

With optical technology and design advances, larger freeform optics are increasingly sought after by consumers for an expanding number of applications. Many techniques have been developed to meet the challenges of producing these nonrotationally symmetric optics, which cannot be fabricated via traditional manufacturing and metrology processes. In the past, methods were established to create smaller freeforms. With demands for more and larger freeforms, manufacturers must scale up existing processes. This paper will present some of the challenges and solutions of extending freeform polishing capabilities from approximately 150 mm diameter parts to a component of over 500 mm in diameter. In fabricating the 500 mm freeform, Optimax has addressed many of the manufacturing and metrology challenges using some proprietary techniques as well as some novel methods. Some of the approaches explored in this paper include acquisition of a substrate blank of sufficient dimensions, material handling logistics, polishing strategies, and metrology. Earlier freeform polishing projects at Optimax utilized a smaller pick-and-place style, 6-axis robotic arm. The route to design, build, and program a scaled-up polishing robotic arm is discussed. Considerations for polishing path planning and metrology are explained. In addition, deflectometry, a non-interferometric measurement method using fringe reflection and ray tracing, has been developed in parallel to help measure mid-spatial frequency error on a part surface faster and more safely than traditional methods, as it can be done in-situ.

Paper Details

Date Published: 15 November 2019
PDF: 12 pages
Proc. SPIE 11175, Optifab 2019, 1117514 (15 November 2019); doi: 10.1117/12.2536845
Show Author Affiliations
Jen Coniglio, Optimax Systems, Inc. (United States)
Matt Brunelle, Optimax Systems, Inc. (United States)
Ian Ferralli, Optimax Systems, Inc. (United States)
Brian Myer, Optimax Systems, Inc. (United States)
Tim Lynch, Optimax Systems, Inc. (United States)
Todd Blalock, Optimax Systems, Inc. (United States)
Nick Quattrociocchi, Optimax Systems, Inc. (United States)
Jessica DeGroote Nelson, Optimax Systems, Inc. (United States)


Published in SPIE Proceedings Vol. 11175:
Optifab 2019
Blair L. Unger; Jessica DeGroote Nelson, Editor(s)

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