Shrinkage, microstructure, and mechanical properties of sintered 3D‐printed silica via stereolithography

材料科学 立体光刻 复合材料 烧结 方石英 陶瓷 抗压强度 收缩率 微观结构 制作 鳞石英 抗弯强度 石英 替代医学 病理 医学
作者
P.R.V. Evans,Griffin Turner,Raj Patel,Mohammadamin Moghadasi,Qirong Yang,Zhijian Pei,Chao Ma,James D. Paramore,Brady G. Butler,Kelvin Y. Xie
出处
期刊:International Journal of Applied Ceramic Technology [Wiley]
卷期号:21 (3): 1638-1647 被引量:5
标识
DOI:10.1111/ijac.14612
摘要

Abstract Stereolithography has been used to create ceramic parts with complex geometry that is difficult to achieve with conventional fabrication techniques. This study used stereolithography to print silica honeycomb structures with a commercial Formlabs Form2 printer. The printed samples were sintered at different temperatures, and the print shape was retained up to 1300°C, but significant distortion from partial melting occurred at 1400°C. Higher sintering temperatures lead to more shrinkage, but it is non‐uniform among directions, with the open cell plane shrinking more than the dense plane of the sample. As expected, the density of samples also increases with the sintering temperature. At higher sintering temperatures, there is an increase in cristobalite and a decrease in quartz, tridymite, and amorphous silica. Regarding mechanical properties, the out‐of‐plane compressive strength is approximately one order of magnitude higher than the in‐plane compressive strength. When compressed along the out‐of‐plane direction, the samples sintered at lower temperatures surprisingly exhibit higher strength, which is explained by the micro‐cracking mechanism. As expected, the samples sintered at higher temperatures display higher strength when compressed along the in‐plane direction.
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