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Fabrication and microstructure of quartz ceramics with orderly–arranged carbon filler

机译:碳素有序排列的石英陶瓷的制备和微观结构

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摘要

Ceramics with tailored pore structure are showing potential applications in some special fields. For fabricating quartz ceramics with orderly–arranged carbon filler, a combination of 3D printing, vacuum suction filtration and sintering was explored to fabricate quartz ceramics with highly–ordered and well–connected big pore channels. The spatial lattice structure in the polylactic acid (PLA) template fabricated by 3D printing together with raw material ratio and sintering temperature has great effect on the properties and pore structure of the porous quartz ceramics. To demonstrate the technical feasibility for fabricating quartz ceramics with orderly–arranged filler, carbon powder was taken as an example and fully filled in the big pore channels of the porous quartz ceramics via vacuum impregnation method. By choosing the quartz ceramics with only highly–ordered and well–connected big pore channels as substrate, quartz ceramics with orderly–arranged carbon filler were successfully obtained.
机译:具有定制孔结构的陶瓷在某些特殊领域显示出潜在的应用。为了用有序排列的碳填料制造石英陶瓷,探索了3D打印,真空抽吸过滤和烧结相结合的方法,以制造具有高度有序且连通性良好的大孔隙通道的石英陶瓷。通过3D打印制造的聚乳酸(PLA)模板中的空间晶格结构,以及原料比率和烧结温度,对多孔石英陶瓷的性能和孔结构都有很大影响。为了证明用有序排列的填料制造石英陶瓷的技术可行性,以碳粉为例,并通过真空浸渍法将碳粉完全填充在多孔石英陶瓷的大孔道中。通过选择仅具有高度有序和良好连接的大孔隙通道的石英陶瓷作为基底,可以成功地获得具有有序排列的碳填料的石英陶瓷。

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