Crack-healing behavior of Al2O3/SiC composite

Ying-kui Guo, Rui Chen, Xiu-lan He, J. Qi, Dayong Li
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引用次数: 1

Abstract

Al2O3/SiC composite was prepared at 1700°C by the hot-press sintering method, using Al2O3 and SiC powders as the raw materials. The composite was mechanically whittled with the different thicknesses for the bending strength test. The results exhibited that the bending strength decreased as the whittled thickness increasing. The SEM observations revealed more cracks appeared on the surface of the sample as the whittled thickness increasing. Then, the sample whittled with the thicknesses of 20µm was sintered at 1200°C for certain time to have a further insight into the effect of the sintering time on the microstructure and mechanical property in this study. It could be found that, after sintered at 1200°C for 60min, the maximum of the bending strength for Al2O3/SiC composite was obtained, reaching 343.88MPa. XRD and SEM results suggested that the crack-healing mechanism of Al2O3/SiC composite was mainly due to the oxidation of SiC when the composite was sintered in air. The oxidation reaction could be described as follows: SiC+2O2→SiO2+CO2 (CO). The generated SiO2 filled up the cracks, which made the cracks healed and the strength restored.
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Al2O3/SiC复合材料的裂纹愈合行为
以Al2O3和SiC粉末为原料,在1700℃下采用热压烧结法制备了Al2O3/SiC复合材料。对不同厚度的复合材料进行机械切削,进行抗弯强度试验。结果表明,随着切削厚度的增加,弯曲强度降低。扫描电镜观察发现,随着切削厚度的增加,试样表面出现了更多的裂纹。然后,将削削厚度为20µm的试样在1200℃下烧结一定时间,进一步了解烧结时间对本研究微观组织和力学性能的影响。结果表明,在1200℃下烧结60min后,Al2O3/SiC复合材料的抗折强度达到最大值343.88MPa。XRD和SEM结果表明,Al2O3/SiC复合材料的裂纹愈合机制主要是由于复合材料在空气中烧结时SiC氧化所致。氧化反应可以描述为:SiC+2O2→SiO2+CO2 (CO)。生成的SiO2填充裂纹,使裂纹愈合,强度恢复。
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