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A new approach for the net-shape fabrication of porous Si_3N_4 bonded SiC ceramics with high strength

机译:高强度多孔Si_3N_4键合SiC陶瓷净成形的新方法

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In this study, Si_3N_4 bonded porous SiC ceramics with high strength had been net-shapely fabricated by a new approach. In this approach, we proposed a two-step processing route composed of freeze casting and carbothermal reduction reactions in which carbon aerogels, derived from sol infiltration and pyrolysis, involved. The phase components, microstructures and properties of the prepared ceramics were investigated. The results showed that carbon aerogels with high apparent surface area had been completely reacted and new SiC and Si_3N_4 grains had been produced. The porous ceramics with flexural strength of 164.3 MPa at 33% porosity and 80.5 MPa at 46% porosity were obtained, whose linear shrinkages were only 1.06% and 1.94% during the whole processing respectively.
机译:在这项研究中,通过一种新方法净成形了高强度的Si_3N_4键合多孔SiC陶瓷。在这种方法中,我们提出了一个由冷冻浇铸和碳热还原反应组成的两步​​工艺路线,其中涉及从溶胶渗透和热解衍生的碳气凝胶。研究了所制备陶瓷的相组成,微观结构和性能。结果表明,具有高表观表面积的碳气凝胶已经完全反应,并产生了新的SiC和Si_3N_4晶粒。得到的多孔陶瓷在33%的孔隙率下的抗弯强度为164.3 MPa,在46%的孔隙率下的弯曲强度为80.5 MPa,在整个加工过程中其线性收缩率分别仅为1.06%和1.94%。

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