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Additive Manufacturing of Transparent Silica Glass from Solutions

机译:来自溶液的透明二氧化硅玻璃的添加剂制造

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摘要

A sol, aqueous solution-based ink is presented for fabrication of 3D transparent silica glass objects with complex geometries, by a simple 3D printing process conducted at room temperature. The ink combines a hybrid ceramic precursor that can undergo both the photopolymerization reaction and a sol-gel process, both in the solution form, without any particles. The printing is conducted by localized photopolymerization with the use of a low-cost 3D printer. Following printing, upon aging and densifying, the resulting objects convert from a gel to a xerogel and then to a fused silica. The printed objects, which are composed of fused silica, are transparent and have tunable density and refractive indices.
机译:通过在室温下在室温下进行的简单3D印刷工艺,溶胶,溶胶,基于溶液的油墨用复杂的几何形状制造3D透明二氧化硅玻璃物体。 该油墨结合了杂化陶瓷前体,其可以在溶液形式中经历光聚合反应和溶胶 - 凝胶工艺,而没有任何颗粒。 通过使用低成本3D打印机通过局部光聚合进行印刷。 在衰老和致密化后,所产生的物体从凝胶转换为Xerogel,然后转换为熔融二氧化硅。 由熔融二氧化硅组成的印刷物体是透明的,具有可调谐密度和折射率。

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