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One-step volumetric additive manufacturing of complex polymer structures
Author(s) -
Maxim Shusteff,
Allison E. Browar,
Brett Kelly,
Johannes Henriksson,
Todd H. Weisgraber,
Robert M. Panas,
Nicholas X. Fang,
Christopher M. Spadaccini
Publication year - 2017
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aao5496
Subject(s) - aperiodic graph , computer science , polymer , nanotechnology , materials science , composite material , mathematics , combinatorics
Two limitations of additive manufacturing methods that arise from layer-based fabrication are slow speed and geometric constraints (which include poor surface quality). Both limitations are overcome in the work reported here, introducing a new volumetric additive fabrication paradigm that produces photopolymer structures with complex nonperiodic three-dimensional geometries on a time scale of seconds. We implement this approach using holographic patterning of light fields, demonstrate the fabrication of a variety of structures, and study the properties of the light patterns and photosensitive resins required for this fabrication approach. The results indicate that low-absorbing resins containing ~0.1% photoinitiator, illuminated at modest powers (~10 to 100 mW), may be successfully used to build full structures in ~1 to 10 s.

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