立体光刻
材料科学
数字光处理
陶瓷
固化(化学)
3D打印
聚合
复合材料
氧化铝陶瓷
紫外线固化
残余应力
制作
烧结
聚合物
光学
医学
物理
投影机
替代医学
病理
作者
Ying Sun,Ming Li,Yanlin Jiang,Bohang Xing,Minhao Shen,Chuanru Cao,Cao Wang,Zhe Zhao
标识
DOI:10.1002/adem.202001475
摘要
Herein, translucent alumina ceramics with fine complex geometric shapes are successfully fabricated by a digital light processing (DLP) process followed by vacuum sintering. The interlayer bonding condition is the key for preparing high‐quality translucent alumina for this layer‐by‐layer additive manufacturing (AM) method. The curing characteristics of alumina suspensions are carefully investigated by curing depth and polymerization conversion behavior. It is clear that the residual stress resulted from the polymerization process is more critical than the curing depth for selecting optimum curing time. Finally, high‐quality translucent alumina ceramic and complex structures are realized using this novel AM technique. It reveals that DLP 3D printing method can be a promising technology for the fabrication of transparent ceramics.
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