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3D printed glass: surface finish and bulk properties as a function of the printing process

Authors :
Robert M. Richardson
Michael P. Avery
Susanne Klein
Regina Frei
Paul Bartlett
Steve Simske
Ortiz Segovia, Maria V.
Urban, Philipp
Imai, Francisco H.
Source :
Klein, S, Avery, M, Richardson, R, Bartlett, P, Frei, R & Simske, S 2015, 3D printed glass : surface finish and bulk properties as a function of the printing process . in M V Ortiz Segovia, P Urban & F H Imai (eds), SPIE Proceedings Vol. 9398 : Measuring, Modeling, and Reproducing Material Appearance 2015 ., 93980R, Society of Photographic Instrumentation Engineers, Measuring, modeling, and reproducing material appearance 2015, San Francisco, United States, 9/02/15 . https://doi.org/10.1117/12.2085129
Publication Year :
2015
Publisher :
SPIE, 2015.

Abstract

3D-printing, along with other additive manufacturing (AM) and rapid prototyping (RP) techniques, involves building up structures in a layer by layer fashion based upon a computer design file. Such techniques are well suited to the production of one-off, complex structures that would often be difficult to produce using traditional manufacturing methods. There has been rapid growth and interest in this field during recent years and a range of techniques are now available which make use of many common materials such as plastic, metal, wood and ceramic. However, relatively little has been done to develop AM using glass. Glass is usually printed at room temperature and requires a second step, the firing process, to achieve the final result. Depending on which 3D printing technique is used to produce the so called greenware and what support material surrounds the object during firing the surface finish and the bulk properties differ greatly. We will report different techniques and the physical properties (Young’s modulus, opacity and density) of glass generated by them.

Details

ISSN :
0277786X
Database :
OpenAIRE
Journal :
SPIE Proceedings
Accession number :
edsair.doi.dedup.....7fee4896f4f62aae3ea08640033ffd23