To determine the intrinsic fracture pressure of aluminum, data from studies that have used molecular dynamic simulations, the van der Waals method as well as experimental observations have been gathered and analyzed. Results indicate that aluminum has an intrinsic fracture pressure of − 4 GPa at its melting temperature in both liquid and solid states. Moreover, the Fisher equation can be used to estimate the intrinsic fracture pressure of liquid aluminum
The melting curve of the face-centered cubic (fcc) phase of aluminum has been determined from 0 to s...
This thesis explores the thermomechanical behavior of aluminum. Experimental work has been conducted...
Morel, V. Bultel, A. Cheron, B. G.The critical temperature, T (c), of metals is a fundamental point ...
AbstractThe dependence of the melting temperature versus the pressure under static conditions and un...
AbstractThis work involves the influence of high pressure on some thermodynamical properties of soli...
In this study, molecular dynamics (MD) simulations coupled with multi-scale shock technique (MSST) a...
Feeding distances have been calculated for an Al–7%Si alloy by using first principles, i.e. Darcy’s ...
A pressure-volume-temperature relation in aluminum was calculated by pseudopotential method and Mie-...
Aluminum is one of the most ubiquitous elements on Earth. Since its isolation in 1825, aluminum has ...
First-principles calculations based on density-functional theory, with generalized gradient correcti...
Nous rendons compte ici d'une méthode de calcul de l'équation d'état et des courbes Hugoniot des mét...
The plastic deformation of pure aluminum was investigated by tensile testing over a wide range of te...
The Interstitialcy Theory offers a unified description of the solid, liquid, and amorphous states o...
The present paper reports on brittle spall fracture of aluminum foil and sheet at room temperature. ...
A no. of aluminoborosilicate glass-aluminum bonds were prepd. by thermocompression, resulting in fra...
The melting curve of the face-centered cubic (fcc) phase of aluminum has been determined from 0 to s...
This thesis explores the thermomechanical behavior of aluminum. Experimental work has been conducted...
Morel, V. Bultel, A. Cheron, B. G.The critical temperature, T (c), of metals is a fundamental point ...
AbstractThe dependence of the melting temperature versus the pressure under static conditions and un...
AbstractThis work involves the influence of high pressure on some thermodynamical properties of soli...
In this study, molecular dynamics (MD) simulations coupled with multi-scale shock technique (MSST) a...
Feeding distances have been calculated for an Al–7%Si alloy by using first principles, i.e. Darcy’s ...
A pressure-volume-temperature relation in aluminum was calculated by pseudopotential method and Mie-...
Aluminum is one of the most ubiquitous elements on Earth. Since its isolation in 1825, aluminum has ...
First-principles calculations based on density-functional theory, with generalized gradient correcti...
Nous rendons compte ici d'une méthode de calcul de l'équation d'état et des courbes Hugoniot des mét...
The plastic deformation of pure aluminum was investigated by tensile testing over a wide range of te...
The Interstitialcy Theory offers a unified description of the solid, liquid, and amorphous states o...
The present paper reports on brittle spall fracture of aluminum foil and sheet at room temperature. ...
A no. of aluminoborosilicate glass-aluminum bonds were prepd. by thermocompression, resulting in fra...
The melting curve of the face-centered cubic (fcc) phase of aluminum has been determined from 0 to s...
This thesis explores the thermomechanical behavior of aluminum. Experimental work has been conducted...
Morel, V. Bultel, A. Cheron, B. G.The critical temperature, T (c), of metals is a fundamental point ...