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ŠTAFFOVÁ, M. ONDREÁŠ, F. SVATÍK, J. ZBONČÁK, M. JANČÁŘ, J. LEPCIO, P.
Original Title
3D printing and post-curing optimization of photopolymerized structures: Basic concepts and effective tools for improved thermomechanical properties
Type
journal article in Web of Science
Language
English
Original Abstract
The final thermo-mechanical properties of structural parts fabricated by masked stereolithography (MSLA) are highly determined not only by the processing parameters, but also by the post-processing methods. Improper implementation of post-treatment often leads to underperforming printouts. A novel tool for complex characterization of 3D printed bodies was developed and systematically demonstrated on a commercial free-radical photopolymerization (FRP) resin. The method relies on superimposed static and oscillatory mechanical test combining the heat deflection temperature (HDT) measurement together with the dynamic mechanical analysis (DMA) in a single test for fast and reliable characterization of parameters determining the curing behaviour of the photopolymer. The influence of post-curing time was addressed with a special focus on network density. Furthermore, the print orientation, having a high impact on mechanical properties, is discussed with a particular regard on the residual stress mitigation in future applications, such as 3D-printed cellular bodies.
Keywords
3D printing;Masked stereolithography;Post processing;DMA;Print orientation;Network density
Authors
ŠTAFFOVÁ, M.; ONDREÁŠ, F.; SVATÍK, J.; ZBONČÁK, M.; JANČÁŘ, J.; LEPCIO, P.
Released
4. 2. 2022
Publisher
Elsevier
ISBN
0142-9418
Periodical
POLYMER TESTING
Year of study
108
Number
1
State
United Kingdom of Great Britain and Northern Ireland
Pages from
Pages to
11
Pages count
URL
https://www.sciencedirect.com/science/article/pii/S0142941822000277
Full text in the Digital Library
http://hdl.handle.net/11012/203965
BibTex
@article{BUT176673, author="ŠTAFFOVÁ, M. and ONDREÁŠ, F. and SVATÍK, J. and ZBONČÁK, M. and JANČÁŘ, J. and LEPCIO, P.", title="3D printing and post-curing optimization of photopolymerized structures: Basic concepts and effective tools for improved thermomechanical properties", journal="POLYMER TESTING", year="2022", volume="108", number="1", pages="1--11", doi="10.1016/j.polymertesting.2022.107499", issn="0142-9418", url="https://www.sciencedirect.com/science/article/pii/S0142941822000277" }