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Solvent based Slurry Stereolithography 3D printed hydrophilic ceramic membrane for ultrafiltration application

机译:基于溶剂的浆料立体光刻3D印刷亲水性陶瓷膜,用于超滤应用

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摘要

The proposed work investigates a novel 3D printing technique called as Solvent based Slurry Stereolithography (3S) to fabricate membranes for filtration application. 3S process is an indirect fabrication method where the green parts are 3D printed first and densified later by sintering process. In this paper, membranes using alumina material were fabricated with a controlled thickness between 200 and 250 mu m and surface roughness ranges between 0.17 and 0.18 mu m. The factors that affected the entire fabrication process such as material synthesis, printing parameters, and the sintering temperature cycle are presented through empirical data. The material synthesis includes powder selection based on the morphology and optimization of the raw material. Based on the particle structure and its concentration, different slurry compositions were prepared, and green parts were 3D printed. The printed samples are characterized for thickness, roughness, porosity, and pore size followed with a brief discussion regarding filtration application.
机译:该拟议的工作研究了一种称为溶剂基浆料立体光刻(3S)的新型3D印刷技术,以制造用于过滤施用的膜。 3S过程是一种间接制造方法,其中绿色部件首先印刷3D并通过烧结过程致密化。在本文中,使用氧化铝材料的膜在200至250μm的受控厚度之间制造,表面粗糙度范围在0.17和0.18μm之间。通过经验数据呈现影响整个制造过程的因素,例如材料合成,印刷参数和烧结温度周期。材料合成包括基于原料的形态和优化的粉末选择。基于颗粒结构及其浓度,制备不同的浆料组合物,绿色零部件是印刷的3D。印刷样品的特征在于厚度,粗糙度,孔隙率和孔径,然后进行了关于过滤施用的简要讨论。

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