The article presents a numerical simulation of the mechanical properties of a Ti-Nb β-alloy on three different scales. The ab-initio approach is used to estimate the concentrations of the Ti alloy with required elastic properties. On the basis of molecular dynamics simulation, we calculate the adhesive force between individual particles of the alloy. The calculated dependence is implemented within the movable cellular automata method to determine the mechanical properties of Ti-Nb depending on the interparticle free space
We present an approach to study the transferability of molecular dynamics (MD) interatomic potential...
International audienceThis work provides a description, at the atomic level, of a mechanical treatme...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
The article presents a numerical simulation of the mechanical properties of a Ti-Nb β-alloy on three...
A multilevel approach is used to numerically investigate physical and mechanical properties of titan...
The demand for implants with individual shape requires the development of new methods and approaches...
This article describes a systematic theoretical investigation of the role of Nb substitution on the ...
High-temperature thermal stability, elastic moduli and anisotropy are among the key properties, whic...
The paper undertakes a study of plastic deformation in a titanium crystallite under mechanical loadi...
The alloying reaction of an Al-coated Ti nanoparticle having equi-atomic fractions and a diameter of...
Using molecular dynamics simulation in combination with an embedded atom method potential we analyze...
Elastic behaviour of Ti-6Al-4V alloy elaborated through additive manufacturing process is studied bo...
In this article, the phase stability, elastic properties, and electronic structure of the β-TiX (X =...
© 2016, Springer Science+Business Media New York.Results of a computer simulation of the elastic pro...
Selective laser sintering (SLS) is one of the most commonly used methods in additive manufacturing, ...
We present an approach to study the transferability of molecular dynamics (MD) interatomic potential...
International audienceThis work provides a description, at the atomic level, of a mechanical treatme...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
The article presents a numerical simulation of the mechanical properties of a Ti-Nb β-alloy on three...
A multilevel approach is used to numerically investigate physical and mechanical properties of titan...
The demand for implants with individual shape requires the development of new methods and approaches...
This article describes a systematic theoretical investigation of the role of Nb substitution on the ...
High-temperature thermal stability, elastic moduli and anisotropy are among the key properties, whic...
The paper undertakes a study of plastic deformation in a titanium crystallite under mechanical loadi...
The alloying reaction of an Al-coated Ti nanoparticle having equi-atomic fractions and a diameter of...
Using molecular dynamics simulation in combination with an embedded atom method potential we analyze...
Elastic behaviour of Ti-6Al-4V alloy elaborated through additive manufacturing process is studied bo...
In this article, the phase stability, elastic properties, and electronic structure of the β-TiX (X =...
© 2016, Springer Science+Business Media New York.Results of a computer simulation of the elastic pro...
Selective laser sintering (SLS) is one of the most commonly used methods in additive manufacturing, ...
We present an approach to study the transferability of molecular dynamics (MD) interatomic potential...
International audienceThis work provides a description, at the atomic level, of a mechanical treatme...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...