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Fabrication of Highly Porous Alumina-Based Ceramics with Connected Spaces by Employing PMMA Microspheres as a Template

机译:利用pmma微球作为模板制备具有连通空间的高孔隙氧化铝基陶瓷

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摘要

Highly porous alumina-based ceramics were fabricated by a slip casting method by employing polymethylmethacrylate (PMMA) microspheres having different diameters as a template and MgO or SiC powder as a sintering aid and subsequent calcination at 1600°C. Spherical pores reflecting the morphology of the PMMA microspheres could be fabricated. In addition, the formation of much smaller connected space among the pores was observed on the pore's inner walls of all ceramics. In this method, porous structure, for example, pore diameter, shape (open or closed), and mechanical properties, could be controlled by varying the particle size of PMMA microspheres and its concentration in alumina-based slurries. Highly porous and mechanically strong alumina-based ceramics having an open porosity of 62, a connected space size of 1.3 m, and a compressive strength of 147.6 MPa could be fabricated by employing PMMA microspheres with a mean particle size of 22.6 m and an appropriate amount of SiC.
机译:通过使用具有不同直径的聚甲基丙烯酸甲酯(PMMA)微球作为模板并且使用MgO或SiC粉末作为烧结助剂并随后在1600℃下煅烧,通过滑铸法来制造高度多孔的氧化铝基陶瓷。可以制造反映PMMA微球形态的球形孔。另外,在所有陶瓷的孔的内壁上观察到在孔之间形成的连接空间小得多。在这种方法中,可以通过改变PMMA微球的粒径及其在氧化铝基浆料中的浓度来控制多孔结构,例如孔径,形状(开放或封闭)和机械性能。通过使用平均粒径为22.6 m,适量的PMMA微球,可以制造具有62的开孔孔隙率,1.3 m的连通空间尺寸和147.6 MPa的抗压强度的高多孔性和机械强度高的氧化铝基陶瓷。 SiC。

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