A digital light processing 3D printing approach for tuning the interfacial properties of pore forming agents for porous ceramics

Метод 3D-печати на базе цифровой обработки света для настройки интерфейсных свойств агентов формирования пор в пористых керамиках
Insup Kim, Alberto Andreu, Yong‐Jin Yoon
2023-08-17

DLP 3D printingUV light scatteringceramic-polymer interfacedigital light processinggreen bodyinterfacial propertiespore forming agentsporous ceramicssize modulationsurface characterization
The utilization of pore forming agents (PFAs) in digital light processing (DLP) 3D printing to manufacture porous ceramics through their thermal decomposition has received a great deal of attention. Nevertheless, even though the inner PFA microstructure of a green body is an essential precondition for tailoring the properties of porous ceramics, the approaches established to date have only focused on post-processing. To address this gap, the present study demonstrates a novel DLP approach to elucidate how PFAs are formed in green bodies during DLP 3D printing. Specifically, complex UV light scattering patterns that are common in composite DLP 3D printing and often detrimental were exploited to modify the interface between PFA and the ceramic-polymer matrix. This was done through modulation of the size difference between ceramics and PFAs as well as the DLP's process parameters. Additionally, a method for inferring the interfacial properties of PFAs embedded in a green body through surface characterization is proposed.
1
A surface characterization–based method is proposed to infer interfacial properties of PFAs embedded within green bodies.
2
Complex UV light scattering patterns in composite DLP printing can be exploited to modify the PFA–ceramic-polymer interface instead of being purely detrimental.
3
Modulating the size difference between ceramic particles and PFAs and adjusting DLP process parameters effectively tunes interfacial properties of PFAs.
4
The study introduces a novel DLP 3D printing approach that controls how pore forming agents (PFAs) form inside green bodies during printing rather than only via post-processing.

Pore forming agents (PFAs) embedded in green bodies produced by digital light processing (DLP) 3D printing for porous ceramics

Interfacial properties between PFAs and the ceramic–polymer matrix (as formed during DLP printing) and how they can be tuned via UV light scattering, size difference between ceramics and PFAs, and DLP process parameters; plus inference of these interfacial properties via surface characterization

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Publication Date
2023-08-17
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Authors
Insup Kim
Alberto Andreu
Yong‐Jin Yoon
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