Effect of Different Sintering Additives on the Microstructure, Phase Compositions and Mechanical Properties of Si3N4/SiC Ceramics

H. Yan, Qing-gang Li, Zhi Wang, Hao Wu, Yuying Wu, Xin Cheng
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引用次数: 7

Abstract

Y2O3 and CeO2 were chosen as additives to investigate the effect of different additives on the microstructure, composition of phases and mechanical properties of Si3N4/SiC ceramics using pressureless sintering. Si3N4/SiC ceramic without additives had a high density, while after adding Y2O3 and CeO2, the density and flexural strength of Si3N4/SiC ceramics were significantly decreased due to the increase of porosity. The main phase compositions of samples were β-Si3N4 and SiC. Moreover, the liquid phases Y-Si-O-N and Ce-Si-O-N were observed after adding Y2O3 and CeO2 respectively. It also indicated that for Si3N4/SiC composite ceramics, the high aspect ratio β-Si3N4 overlapped with each other and closely bonded with glass phase could improve flexure strength effectively. Besides, the SiC crystal grains mainly existed in grain boundary, which could inhibit the secondary recrystallization to avoid that the decrease of flexural strength caused by the overgrowth of β-Si3N4 grains.
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不同烧结添加剂对Si3N4/SiC陶瓷显微组织、相组成及力学性能的影响
选择Y2O3和CeO2作为添加剂,研究了不同添加剂对无压烧结Si3N4/SiC陶瓷显微组织、相组成和力学性能的影响。未添加添加剂的Si3N4/SiC陶瓷具有较高的密度,而添加Y2O3和CeO2后,由于孔隙率的增加,Si3N4/SiC陶瓷的密度和抗弯强度明显降低。样品的主要相组成为β-Si3N4和SiC。添加Y2O3和CeO2后,分别观察到液相Y-Si-O-N和Ce-Si-O-N。对于Si3N4/SiC复合陶瓷而言,高纵横比β-Si3N4相互重叠并与玻璃相紧密结合可有效提高其抗弯强度。此外,SiC晶粒主要存在于晶界,可以抑制二次再结晶,避免β-Si3N4晶粒过度生长导致抗弯强度下降。
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