首页> 外文期刊>Journal of the European Ceramic Society >Complex mullite structures fabricated via digital light processing of a preceramic polysiloxane with active alumina fillers
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Complex mullite structures fabricated via digital light processing of a preceramic polysiloxane with active alumina fillers

机译:通过具有活性氧化铝填料的Precermic聚硅氧烷的数字光处理制造的复杂莫来石结构

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摘要

By taking advantage of the multi-functional properties of preceramic polymers, their transformation into ceramic material at low sintering temperatures and the processing capabilities of polymer manufacturing processes, mullite components were fabricated by additive manufacturing. A photocurable silicone preceramic polymer resin containing alumina particles was shaped into complex structures via Digital Light Processing. Dense and crack-free, highly complex porous mullite ceramics were produced by firing a mixture of a commercially available photosensitive polysiloxane as the silica source, containing alumina powder as active filler, in air at a low sintering temperature (1300 degrees C). In particular, the developed formulations, coupled with the additive manufacturing approach, allow for precise control of the architecture of the porous ceramic components, providing better properties compared to parts with stochastic porosity.
机译:通过利用预凝聚聚合物的多功能性能,通过添加剂制造制造它们在低烧结温度下的陶瓷材料和聚合物制造方法的加工能力的转化,通过添加剂制造制造莫来钛矿组分。 含有氧化铝颗粒的可光固化的硅氧烷预聚合物树脂通过数字光处理成形为复杂结构。 通过在低烧结温度(1300℃)的空气中,通过烧制市售的光敏聚硅氧烷作为二氧化硅源的混合物来产生无致密的和无裂缝的多孔莫来石陶瓷制备。 特别地,与添加剂制造方法相结合的开发式制剂允许精确控制多孔陶瓷组分的结构,与具有随机孔隙率的零件相比提供更好的性能。

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