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首页> 外文期刊>Journal of the European Ceramic Society >Process development for additive manufacturing of functionally graded alumina toughened zirconia components intended for medical implant application
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Process development for additive manufacturing of functionally graded alumina toughened zirconia components intended for medical implant application

机译:用于医疗植入物应用的功能梯度氧化铝增韧氧化锆组分的过程开发

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摘要

Additive manufacturing processes become more and more important in almost all areas, also for medical implant application. Medical implants made of ceramics are known for their excellent biological compatibility. For increasing the ingrowth of cells into an implant, a function-optimized structure with a defined porosity seems to be advantageous. Additive manufacturing is suited to realize defined and filigree structures. Lithography-based ceramic manufacturing (LCM), for example, has a high resolution, but still a limited material portfolio. Alumina toughened zirconia is a very interesting material for medical applications, but not commercially available for LCM. In this study, the development of an ATZ suspension usable in the LCM process with a bulk material density higher than 99% after sintering is presented. Furthermore, printing of lattice test structures for the evaluation of accuracy in dependence of printing dimension is demonstrated.
机译:添加剂制造过程在几乎所有领域都变得越来越重要,也适用于医疗植入物。 陶瓷制成的医疗植入物以其优异的生物相容性而闻名。 为了将细胞的向环境增加到植入物中,具有限定孔隙度的功能优化结构似乎是有利的。 添加剂制造非常适合于实现定义和丝锥结构。 例如,基于光刻的陶瓷制造(LCM)具有高分辨率,但仍有有限的材料组合。 氧化铝增韧氧化锆是医疗应用的非常有趣的材料,但不能用于LCM。 在本研究中,展示烧结后,在LCM工艺中,可以在LCM过程中的散装物质密度的开发。 此外,证明了在依赖印刷尺寸的评价晶格试验结构的晶格试验结构。

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