材料科学
制作
生物陶瓷
小旋翼机
硅酮
墨水池
聚合物
复合材料
多孔性
3D打印
抗压强度
共聚物
医学
替代医学
病理
作者
Hamada Elsayed,Luca Grigolato,Gianpaolo Savio,Paolo Colombo,Enrico Bernardo
摘要
Abstract Pastes based on preceramic polymers have a great potential for direct ink writing of bioceramic scaffolds. In this paper, we discuss the fabrication of phase pure sphene (CaTiSiO 5 ) bioceramics, developed by firing, at 1300°C, of silicone‐based printed scaffolds containing CaCO 3 and TiO 2 as active fillers. As a proof of the flexibility of the combination of preceramic polymers and additive manufacturing technologies, several lattice geometries of increasing complexity were successfully explored. In particular, the approach allowed the fabrication of sphene scaffolds with gyroid‐like structure exhibiting an impressive compressive strength, given the high porosity. Moreover, different lattice topologies of sphene scaffolds were compared also in terms of permeability.
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