To reveal the fracture failure mechanisms of single crystals at elevated temperatures, a new temperature-dependent ideal tensile strength model for solids has been developed, based on the critical strain principle. At the same time, the uniaxial tensile strength model, based on the critical failure energy density principle for isotropic materials that was presented in the previous study, is generalized to multi-axial loading and to cubic single crystals. The relationship between the two models is discussed, and how to obtain the material properties needed in the calculations is summarized. The two well-established models are used to predict the temperature-dependent ideal tensile strength of W, Fe and Al single crystals. The predictions fro...
Advances in our understanding of the mechanisms of brittle and semi-brittle fracture processes are o...
This work deals with study of stability of solid crystals under isotropic loading. Ab initio methods...
The thermo-mechanical response of Al 2024-T351 under uniaxial compression loading are presented. Bel...
The temperature dependence of ideal strength is studied for a b.c.c. crystal in [001] and [001] load...
Polycrystalline metals have flow stress two to three orders of magnitude lower than the theoretical ...
Based on a kind of equivalence between heat energy and distortional strain energy, it is assumed tha...
© 2015 Elsevier Ltd. We use a physically-based crystal plasticity model to predict the yield strengt...
This paper describes an attempt to construct a first-principles theory of the fracture toughness of ...
The fracture toughness of transition metals or semiconductor crystals strongly depends on loading ra...
Relationships between intrinsic mechanical hardness and atomic-scale properties are reviewed, Hardne...
In the present paper, a micro-mechanical model based on energetic considerations is developed to sim...
We have developed an empirical formulation, based on the elastic theory, to calculate the variation ...
The knowledge of the fracture strength of solids from room temperature to melting point is not only ...
Breaking down the entire structure of a material implies severing all the bonds between its atoms ei...
The aim of the author’s research in the period of his PhD study was the analysis of mechanical stabi...
Advances in our understanding of the mechanisms of brittle and semi-brittle fracture processes are o...
This work deals with study of stability of solid crystals under isotropic loading. Ab initio methods...
The thermo-mechanical response of Al 2024-T351 under uniaxial compression loading are presented. Bel...
The temperature dependence of ideal strength is studied for a b.c.c. crystal in [001] and [001] load...
Polycrystalline metals have flow stress two to three orders of magnitude lower than the theoretical ...
Based on a kind of equivalence between heat energy and distortional strain energy, it is assumed tha...
© 2015 Elsevier Ltd. We use a physically-based crystal plasticity model to predict the yield strengt...
This paper describes an attempt to construct a first-principles theory of the fracture toughness of ...
The fracture toughness of transition metals or semiconductor crystals strongly depends on loading ra...
Relationships between intrinsic mechanical hardness and atomic-scale properties are reviewed, Hardne...
In the present paper, a micro-mechanical model based on energetic considerations is developed to sim...
We have developed an empirical formulation, based on the elastic theory, to calculate the variation ...
The knowledge of the fracture strength of solids from room temperature to melting point is not only ...
Breaking down the entire structure of a material implies severing all the bonds between its atoms ei...
The aim of the author’s research in the period of his PhD study was the analysis of mechanical stabi...
Advances in our understanding of the mechanisms of brittle and semi-brittle fracture processes are o...
This work deals with study of stability of solid crystals under isotropic loading. Ab initio methods...
The thermo-mechanical response of Al 2024-T351 under uniaxial compression loading are presented. Bel...