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BULLETIN OF THE CHINESE CERAMIC SOCIETY ›› 2026, Vol. 45 ›› Issue (6): 2113-2121.DOI: 10.16552/j.cnki.issn1001-1625.2025.1174

• Ceramics • Previous Articles     Next Articles

Microstructure and Properties of Al2O3/SiCw Composite Ceramics Prepared by Microwave Sintering and Hot Isostatic Pressing

FAN Xinfang1(), HONG Dongbo1, LIN Liangliang2, ZHENG Aiqin2, WANG Jue2, YIN Zengbin1()   

  1. 1.School of Mechanical Engineering,Nanjing University of Science and Technology,Nanjing 210094,China
    2.Xiamen Golden Egret Special Alloy Co.,Ltd.,Xiamen 361006,China
  • Received:2025-11-24 Revised:2026-01-23 Online:2026-06-15 Published:2026-07-14
  • Contact: YIN Zengbin

Abstract:

Alumina (Al2O3) ceramics are widely recognized for their high hardness, excellent wear resistance, and outstanding chemical stability, making them highly promising for structural applications. In this study, high-performance Al2O3/SiCw composite ceramics were fabricated using a combined process involving microwave sintering followed by hot isostatic pressing (HIP). The effects of microwave sintering parameters, silicon carbide whisker (SiCw) content, and HIP post-treatment on the microstructure and mechanical properties of Al2O3/SiCw were systematically investigated. The results indicate that with 7% (mass fraction) SiCw addition and microwave sintering at 1 650 ℃ for 10 min, the Al2O3/SiCw achieves optimal mechanical properties, exhibiting a relative density of 99.2%, Vickers hardness of 18.62 GPa, and fracture toughness of 4.85 MPa·m1/2. After HIP treatment, the properties of the specimens are further improved. In particular, the specimen with 10% SiCw shows the best mechanical property, with its relative density increasing from 97.55% to 99.56%, Vickers hardness reaching 19.55 GPa, and fracture toughness attaining 5.05 MPa·m1/2. Compared to the specimen before HIP treatment, the Vickers hardness and fracture toughness are enhanced by 10.8% and 10.0%, respectively.

Key words: Al2O3/SiCw, microwave sintering, hot isostatic pressing treatment, microstructure, mechanical property

CLC Number: