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Preparation of In-Situ Synthesized SiC Particles Reinforced Highly Porous Si_3N_4 Ceramics by Gel-casting

机译:通过凝胶铸造制备原位合成的SiC颗粒增强高度多孔的Si_3N_4陶瓷

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In this paper, highly porous Si_3N_4 ceramics with high strength, homogeneous microstructure were fabricated by introducing a proper amount of nanometer carbon in the Si_3N_4 slurry by gel-casting. Scanning electron microscopy, X-ray diffraction, Archimedes water-displacement method and three-point bending tests were employed to analyze the microstructures and mechanical properties of the sintered bodies. It was shown by the XRD analysis that SiC particles were formed in the sintered bodies. The pillar β-^sSi_3N_4 morphology, homogeneous microstructure and the SiC particles as a reinforcement phase are the contributing factors for high porosity and good mechanical behavior.
机译:本文通过凝胶铸造在Si_3N_4浆料中引入适量的纳米碳,制造具有高强度,具有高强度,均匀微观结构的高度多孔的Si_3N_4陶瓷。扫描电子显微镜,X射线衍射,Archimedes水置换法和三点弯曲试验用于分析烧结体的微观结构和机械性能。通过XRD分析显示,即在烧结体中形成SiC颗粒。柱β-^ SSI_3N_4形态,均匀的微观结构和SiC颗粒作为增强阶段是高孔隙率和良好机械行为的贡献因素。

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