In this study, 3-trimethoxy-silylpropane-1-thiol (MPTMS) was used as a surface modifier for Al(2)O(3) powder to systematically analyze the effects of MPTMS concentration on the rheological properties, photocuring characteristics, and 3D printing performance of photocurable composite slurries. MPTMS concentration significantly influenced the rheological behavior of the slurry. Slurries containing 2 wt.% and 5 wt.% MPTMS exhibited a wide linear viscoelastic range (LVR). However, at concentrations of 10 wt.% and 20 wt.%, the LVR range narrowed, which led to reduced dispersion stability. In dispersion stability tests, the slurry with 2 wt.% MPTMS showed the most stable dispersion, while the 5 wt.% MPTMS concentration exhibited the highest photocuring rate. In 3D printing experiments, the 5 wt.% MPTMS concentration resulted in the most stable printed structures, whereas printing failures occurred with the 2 wt.% concentration. At 10 wt.% and 20 wt.%, internal cracking was observed, leading to structural defects. In conclusion, MPTMS forms silane bonds on the Al(2)O(3) surface, significantly impacting the stability, rheological properties, and printing quality of Al(2)O(3)-acrylate composite slurries. An MPTMS concentration of 5 wt.% was found to be optimal, contributing to the formation of stable and robust structures.
Impact of Optimal Silane Concentration on the Rheological Properties and 3D Printing Performance of Al(2)O(3)-Acrylate Composite Slurries.
最佳硅烷浓度对Al(2)O(3)-丙烯酸酯复合浆料流变性能和3D打印性能的影响。
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| 期刊: | Materials | 影响因子: | 3.200 |
| 时间: | 2024 | 起止号: | 2024 Nov 13; 17(22):5541 |
| doi: | 10.3390/ma17225541 | ||
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