4.7 Article

Assessing fracture toughness in sintered Al2O3-ZrO2(3Y)-SiC ceramic composites through indentation technique

Journal

CERAMICS INTERNATIONAL
Volume 46, Issue 17, Pages 27143-27149

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2020.07.194

Keywords

Al2O3-ZrO2(3Y)-SiC; Indentation technique; Toughness fracture; Toughening mechanism

Funding

  1. National Natural Science Foundation of China [U1832206, 11805245, 11505247, U1832149]
  2. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA21010202]
  3. Sichuan Science and Technology Program [2018JZ0014]
  4. National Key Research and Development Project [2018YFE0307100]
  5. Key Programs of the Chinese Academy of Sciences (Research on the Development of Nuclear Power Materials and Service Security Technology) [ZDRW-CN-2017-1]

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Al2O3-ZrO2(3Y)-SiC ceramic composites were prepared by spark plasma sintering. The fracture toughness (K-IC) of the material was evaluated by indentation technique using different types of empirical formulas between 29.4 N and 98 N. The calculated K-IC values depend on the crack profile and the applied load. By analyzing the relationship between the indentation radius and the crack length and the crack profile, the crack form of the composite is determined as a Palmqvist crack. Raman spectra result shows that ZrO2 has a significant martensitic phase transformation when the applied load is 5 kg or higher. Additionally, the KIC value decreases slightly as the load increases. The equation based on the Palmqvist crack system and the curve fitting equation are more suitable for the calculation of the K-IC value of the material. The composite exhibits a combination of various toughening mechanisms, such as crack deflection and bridging, thereby improving the fracture toughness of the material.

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