A micromechanical model based on the mean-field approach was developed to investigate the effect of the mismatch in material properties of the constituents on the transformation toughening in zirconia enriched multiphase composites. Important results have been obtained for SiC/Al composites, which have a large potential for application in lightweight automotive structures
The aim of this PhD study is the development of composites in the alumina-zirconia system through a ...
This study presents a new theoretical model for design against fracture of zirconia-toughened functi...
In this paper, a mean-field micromechanical approach has been employed to formulate a nonlinear cons...
Copyright © Copyright 2007. Journal of Mechanics of Materials and Structures. All rights reserved.A ...
The paper presents a micromechanical model to describe the effects of the mismatch in material prope...
Numerical study by the finite element method (FEM) is performed to investigate the effect of dual-sc...
Ceramics / metal functionally graded materials (FGMs) have been attracting much attention as composi...
di meccanismi di tenacizzazione. Fra i molti meccanismi riscontrati, in questo lavoro si è esaminato...
The addition of a ZrO/sub 2/ dispersion can significantly enhance the toughness of a ceramic matrix ...
Fracture toughening processes in transformation toughened zirconia and related systems are reviewed...
Abstract--An analysis of toughening of magnesia partially stabilized zirconia (Mg-PSZ) due to dilata...
Based on micromechanics, thermodynamics and microscale t → m transformation mechanism considerations...
To enhance the performance and design of metal matrix composites, it is extremely important to gain ...
The present paper is aimed to further elucidate the microstructure properties relationship of light ...
Micromechanics based models are considered for application to viscoelasticity and damage in metal ma...
The aim of this PhD study is the development of composites in the alumina-zirconia system through a ...
This study presents a new theoretical model for design against fracture of zirconia-toughened functi...
In this paper, a mean-field micromechanical approach has been employed to formulate a nonlinear cons...
Copyright © Copyright 2007. Journal of Mechanics of Materials and Structures. All rights reserved.A ...
The paper presents a micromechanical model to describe the effects of the mismatch in material prope...
Numerical study by the finite element method (FEM) is performed to investigate the effect of dual-sc...
Ceramics / metal functionally graded materials (FGMs) have been attracting much attention as composi...
di meccanismi di tenacizzazione. Fra i molti meccanismi riscontrati, in questo lavoro si è esaminato...
The addition of a ZrO/sub 2/ dispersion can significantly enhance the toughness of a ceramic matrix ...
Fracture toughening processes in transformation toughened zirconia and related systems are reviewed...
Abstract--An analysis of toughening of magnesia partially stabilized zirconia (Mg-PSZ) due to dilata...
Based on micromechanics, thermodynamics and microscale t → m transformation mechanism considerations...
To enhance the performance and design of metal matrix composites, it is extremely important to gain ...
The present paper is aimed to further elucidate the microstructure properties relationship of light ...
Micromechanics based models are considered for application to viscoelasticity and damage in metal ma...
The aim of this PhD study is the development of composites in the alumina-zirconia system through a ...
This study presents a new theoretical model for design against fracture of zirconia-toughened functi...
In this paper, a mean-field micromechanical approach has been employed to formulate a nonlinear cons...