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Impact of size effects on photopolymerization and its optical monitoring in-situ

Academic Article
Publication Date:
2022
abstract:
Photopolymerization processes are exploited in light exposure-based 3D printing technologies, where either a focused laser beam or a patterned light sheet allows layers of a UV curable, liquid pre-polymer to be solidified. Here we focus on the crucial, though often neglected, role of the layer thickness on photopolymerization. The temporal evolution of polymerization reactions occurring in droplets of acrylate-based oligomers and in photoresist films with varied thickness is investigated by means of an optical system, which is specifically designed for in -situ and real-time monitoring. The time needed for complete curing is found to increase as the polymerization volume is decreased below a characteristic threshold that depends on the specific reaction pathway. This behavior is rationalized by modeling the process through a size-dependent polymerization rate. Our study highlights that the formation of photopolymerized networks might be affected by the involved volumes regardless of the specific curing mechanisms, which could play a crucial role in optimizing photocuring-based additive manufacturing.
Iris type:
01.01 Articolo in rivista
Keywords:
Photopolymerization; Process monitoring; Optically transparent materials; Light scattering; Vat photopolymerization
List of contributors:
Pisignano, Dario; Romano, Luigi; Camposeo, Andrea; Fabbri, Filippo
Authors of the University:
CAMPOSEO ANDREA
FABBRI FILIPPO
Handle:
https://iris.cnr.it/handle/20.500.14243/416133
Published in:
ADDITIVE MANUFACTURING
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S2214860422004122
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