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Guibo Yu, Wen Yan, Shuhai Wang, Baoxin Su, and Baolai Tan, Toughening mechanism of lined Al2O3-ZrO2 multiphaseceramics in SHS composite pipes, J. Univ. Sci. Technol. Beijing , 13(2006), No. 2, pp.178-182. https://dx.doi.org/10.1016/S1005-8850(06)60039-X
Guibo Yu, Wen Yan, Shuhai Wang, Baoxin Su, and Baolai Tan, Toughening mechanism of lined Al2O3-ZrO2 multiphaseceramics in SHS composite pipes, J. Univ. Sci. Technol. Beijing , 13(2006), No. 2, pp.178-182. https://dx.doi.org/10.1016/S1005-8850(06)60039-X
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Toughening mechanism of lined Al2O3-ZrO2 multiphaseceramics in SHS composite pipes

摘要: Hypoeutectic and hypereutectic Al2O3-ZrO2 multiphase ceramics-lined composite pipes were produced by using the gravitational separation self-propagate high-temperature synthesis (SHS) process. The microstructure of the ceramics was observed by means of SEM and EPMA. The fracture toughness of the multiphase ceramics was tested by using the Vickers indentation method. The fracture toughness of hypoeutectic Al2O3-ZrO2 multiphase ceramics is 15.96 MPa·m1/2 and that of hypoeutectic Al2O3-ZrO2 multiphase ceramics is 15.23 MPa·m1/2. The toughening mechanisms were systematically investigated by means of SEM and XRD. The results show that the bridging toughening mechanism, stress induced ZrO2 transformation toughening mechanism, and microcrack toughening mechanism are the predominant toughening mechanism.

 

Toughening mechanism of lined Al2O3-ZrO2 multiphaseceramics in SHS composite pipes

Abstract: Hypoeutectic and hypereutectic Al2O3-ZrO2 multiphase ceramics-lined composite pipes were produced by using the gravitational separation self-propagate high-temperature synthesis (SHS) process. The microstructure of the ceramics was observed by means of SEM and EPMA. The fracture toughness of the multiphase ceramics was tested by using the Vickers indentation method. The fracture toughness of hypoeutectic Al2O3-ZrO2 multiphase ceramics is 15.96 MPa·m1/2 and that of hypoeutectic Al2O3-ZrO2 multiphase ceramics is 15.23 MPa·m1/2. The toughening mechanisms were systematically investigated by means of SEM and XRD. The results show that the bridging toughening mechanism, stress induced ZrO2 transformation toughening mechanism, and microcrack toughening mechanism are the predominant toughening mechanism.

 

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