Evaluation of Physical Properties of Zirconia Suspension with Added Silane Coupling Agent for Additive Manufacturing Processes
Оценка физических свойств суспензии циркония с добавлением силанового сцепляющего агента для аддитивных технологий
2022-02-11
SCID: 54.1/mef7jnru
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biaxial flexural strengthdigital light processing (DLP)silane coupling agentvolume fraction (52, 54, 56 vol%)zirconia suspension
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Abstract (AI)
In this study, we have analysed the effects of a silane coupling agent on the volume fraction of zirconia for digital light processing (DLP)-based additive manufacturing processes. Zirconia suspension was prepared by the incorporation of silane-modified zirconia particles (experimental group) or untreated zirconia particles (control group). Furthermore, the control and experimental group were subdivided into three groups based on the volume fraction (52, 54, and 56 vol%) of zirconia particles. The disk-shaped zirconia samples were 3D (three-dimensional) printed using the DLP technique and their physical and mechanical properties were evaluated. The addition of a silane coupling agent to the zirconia samples was found to have influence of about 6% on the hardness and biaxial flexural strength. Moreover, the decrease in minute air gaps inside the zirconia layers significantly increased the material density (visualized from the microstructure analysis). Thus, from this study, it was established that the silane-modified zirconia particles had a positive effect on the physical properties of the zirconia parts.
Key Findings
1
Adding a silane coupling agent to zirconia suspensions for DLP additive manufacturing increased hardness and biaxial flexural strength by about 6%.
2
Reduction of internal air gaps led to a significant increase in material density of the printed zirconia parts.
3
Silane-modified zirconia particles reduced minute air gaps inside zirconia layers, as shown by microstructure analysis.
4
Zirconia suspensions with silane modification were evaluated across volume fractions of 52, 54, and 56 vol% during DLP printing, showing positive effects on physical properties compared to untreated controls.
Research Object
Zirconia suspension/3D-printed zirconia parts with silane-modified or untreated zirconia particles for DLP additive manufacturing
Research Subject
Effects of adding a silane coupling agent and varying zirconia volume fraction (52, 54, 56 vol%) on physical and mechanical properties (hardness, biaxial flexural strength, density/microstructure, and internal porosity) of the zirconia suspension/printed parts
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2022-02-11
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