材料科学
烧结
多孔性
陶瓷
3D打印
芯(光纤)
氧化铝陶瓷
复合材料
数字光处理
冶金
计算机科学
投影机
计算机视觉
作者
Xiang Zheng,Yansong Liu,Yansong Liu,Yongsheng Liu,Yongsheng Liu,Wentan She,Shen-Li Fu,Yejie Cao
摘要
Abstract This work investigated sintering procedures for high‐porosity alumina ceramic cores fabricated by digital light processing 3D‐printing. Results showed that increasing sintering temperature reduced cristobalite while enhancing mullite formation. Flexural strength initially increased then declined with temperature, exhibiting an inverse relationship with porosity. Faster heating rates (up to 4°C/min) decreased mullite content and size, yielding peak strength of 23.73 MPa. Extended holding time reduced porosity but caused strength to first increase then decrease, peaking at 29.06 MPa. Optimal performance was achieved at 1450°C with 4°C/min heating and 120 min hold, producing cores with 28.28 MPa strength, 41.40% porosity, and 2.15 g/cm 3 density. The process successfully balanced high porosity and mechanical properties at reduced temperatures.
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