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Production and characterization of miro- and nano-features in biomedical alumina and zirconia ceramics using a tape casting route

机译:使用流延铸造法生产和表征生物医学氧化铝和氧化锆陶瓷中的微特征和纳米特征

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摘要

A process of micromolding, delivering micro- and nanopatterned ceramic surfaces for biomaterial applications is described in this work. To create the desired structures, tape casting of ceramic slurries on microfabricated silicon mold was used. Several tape casting slurry compositions were tested to evaluate the feasibility of transferring micro- and nano-features from silicon molds. Used ceramics were alumina (α-Al2O3) and yttria stabilized zirconia. Three types of polymeric binders for the green tape (PVB, PES, and PVP) were investigated using three different solvents (ethanol, n-methyl-pyrrolidone, water). Well-defined features in shapes of wells with diameters down to 2.4 μm and a depth of 10 μm and pillars with diameters down to 1.7 μm and a height of 3 μm were obtained. Morphology, grain size and porosity of the sintered bodies were characterized. Finally fibroblast cells were cultured on the surfaces in order to observe their morphology under influence of the microstructured surfaces.
机译:在这项工作中描述了微成型,传递用于生物材料应用的微米和纳米图案的陶瓷表面的过程。为了创建所需的结构,使用了在微细加工的硅模具上的陶瓷浆料的流延铸造。测试了几种流延成型浆料组合物,以评估从硅模具转移微特征和纳米特征的可行性。使用的陶瓷是氧化铝(α-Al2O3)和氧化钇稳定的氧化锆。使用三种不同的溶剂(乙醇,正甲基吡咯烷酮,水)研究了三种用于绿色胶带的聚合物粘合剂(PVB,PES和PVP)。获得直径小于2.4μm,深度为10μm的孔的形状以及直径小于1.7μm和高度为3μm的柱的轮廓分明的特征。表征了烧结体的形态,晶粒尺寸和孔隙率。最后在表面上培养成纤维细胞,以便在微结构表面的影响下观察其形态。

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