2005•International Journal of Materials and Product TechnologyRequires access

Si3O4 and Al2O3 based ceramic

Ján Dusza, Pavol Šajgalı́k

Open publisher page 7 citations

Abstract

The aim of this review paper is to summarise the results of the worldwide investigation in the field of development and characterisation of structural ceramic nanocomposites during the last two decades. The main processing routes are summarised and the principal microstructure parameters are described. The relationships between rupture strength, Weibull modulus and defects-fracture origins are discussed as well as the possibilities of strength improvement through improved processing steps and microstructure design. Possible strengthening and toughening mechanisms are described and the relationships between the fracture toughness, microstructure and fracture micromechanisms are discussed. The residual stresses and their effect on toughness, strength and reliability are analysed. The effect of the temperature on deformation, crack growth and creep failure of the ceramic nanocomposites are characterised.

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What this paper is about

The aim of this review paper is to summarise the results of the worldwide investigation in the field of development and characterisation of structural ceramic nanocomposites during the last two decades. The main processing routes are summarised and the principal microstructure parameters are described. The relationships between rupture strength, Weibull modulus and defects-fracture origins are discussed as well as the possibilities of strength improvement through improved processing steps and microstructure design. Possible strengthening and toughening mechanisms are described and the relationships between the fracture toughness, microstructure and fracture micromechanisms are discussed. The residual stresses and their effect on toughness, strength and reliability are analysed. The effect of the temperature on deformation, crack growth and creep failure of the ceramic nanocomposites are characterised.

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Available abstract

The aim of this review paper is to summarise the results of the worldwide investigation in the field of development and characterisation of structural ceramic nanocomposites during the last two decades. The main processing routes are summarised and the principal microstructure parameters are described. The relationships between rupture strength, Weibull modulus and defects-fracture origins are discussed as well as the possibilities of strength improvement through improved processing steps and microstructure design. Possible strengthening and toughening mechanisms are described and the relationships between the fracture toughness, microstructure and fracture micromechanisms are discussed. The residual stresses and their effect on toughness, strength and reliability are analysed. The effect of the temperature on deformation, crack growth and creep failure of the ceramic nanocomposites are characterised.

Key concepts: Materials science, Microstructure, Ceramic, Creep, Fracture toughness, Toughening, Weibull modulus, Nanocomposite

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Si3O4 and Al2O3 based ceramic — Research Paper | ScholarLens