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首页> 外文期刊>Journal of the European Ceramic Society >Digital light processing of wollastonite-diopside glass-ceramic complex structures
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Digital light processing of wollastonite-diopside glass-ceramic complex structures

机译:硅灰石型芯玻璃 - 陶瓷复杂结构的数字光处理

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In this work, the possibility of shaping a glass-filled photosensitive polymer resin with Digital Light Processing (DLP) into a complex 3D structure and transforming it subsequently into a bioactive glass-ceramic scaffold was investigated. The influence of the printing conditions and the heat-treatment was studied using a 41 vol% glass-filled acrylated polymer resin. Scaffolds with designed architecture were turned into a wollastonite-diopside glass-ceramic at 1100 degrees C. They completely maintained their shape, exhibited no viscous flow and showed a homogenous linear shrinkage of around 25%. At 83 vol% porosity structures with Kelvin cell design exhibited a compressive strength exceeding 3 MPa, demonstrating that the material is suitable for the fabrication of bio-ceramic scaffolds for bone tissue engineering applications.
机译:在这项工作中,研究了将玻璃填充的光敏聚合物树脂(DLP)成形为复合3D结构并随后将其转化为生物活性玻璃 - 陶瓷支架。 使用41体积%的玻璃填充丙烯酸聚合物树脂研究了印刷条件和热处理的影响。 具有设计建筑的脚手架被称为1100℃的硅灰石 - 偶像玻璃陶瓷。它们完全保持其形状,没有粘性流动,并且显示出约25%的均匀线性收缩。 在83体积%的孔隙率结构中具有开尔文细胞设计的孔隙率结构表现出超过3MPa的抗压强度,表明该材料适用于制造用于骨组织工程应用的生物陶瓷支架。

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