Atomistic theory holds the promise for the ab initio development of superalloys based on the fundamental principles of quantum mechanics. The last years showed a rapid progress in the field. Results from atomistic modeling enter larger-scale simulations of alloy performance and often may be compared directly to experimental characterization. In this chapter we give an overview of atomistic modeling and simulation for Ni-base superalloys. We cover descriptions of the interatomic interaction from quantum-mechanical simulations with a small number of atoms to multi-million-atom simulations with classical interatomic potentials. Methods to determine structural stability for different chemical compositions, thermodynamic and kinetic properties ...
Interatomic potentials for Ni-Al-V ternary systems have been developed based on the second-nearest-n...
Atomistic modeling plays a critical role in advancing our understanding of microstructure evolution ...
A computational model based on molecular dynamics and the embedded atom method (EAM) has been constr...
The electronic structure, interatomic bonding, and mechanical properties of two supercell models of ...
Interatomic potentials for the Ni-Co binary and Ni-Al-Co ternary systems have been developed on the ...
Systems containing up to six alloing elements typical of advanced Ni-based superalloys were modelled...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Single crystal Ni-based superalloy, with excellent mechanical properties in high temperature, always...
An interatomic potential for the Ti-Al binary system has been developed based on the second nearest-...
Understanding the temperature-dependent yield strength of Ni-based single crystal superalloys is of ...
Understanding the temperature-dependent yield strength of Ni-based single crystal superalloys is of ...
A combination of atomistic simulations and experiments is used to study the microscopic deformation ...
With developments of semi-empirical interatomic potentials for realistic materials systems, atomisti...
Density Functional Theory (DFT) enables the accurate prediction of many properties of high-temperatu...
Density Functional Theory (DFT) enables the accurate prediction of many properties of high-temperatu...
Interatomic potentials for Ni-Al-V ternary systems have been developed based on the second-nearest-n...
Atomistic modeling plays a critical role in advancing our understanding of microstructure evolution ...
A computational model based on molecular dynamics and the embedded atom method (EAM) has been constr...
The electronic structure, interatomic bonding, and mechanical properties of two supercell models of ...
Interatomic potentials for the Ni-Co binary and Ni-Al-Co ternary systems have been developed on the ...
Systems containing up to six alloing elements typical of advanced Ni-based superalloys were modelled...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Single crystal Ni-based superalloy, with excellent mechanical properties in high temperature, always...
An interatomic potential for the Ti-Al binary system has been developed based on the second nearest-...
Understanding the temperature-dependent yield strength of Ni-based single crystal superalloys is of ...
Understanding the temperature-dependent yield strength of Ni-based single crystal superalloys is of ...
A combination of atomistic simulations and experiments is used to study the microscopic deformation ...
With developments of semi-empirical interatomic potentials for realistic materials systems, atomisti...
Density Functional Theory (DFT) enables the accurate prediction of many properties of high-temperatu...
Density Functional Theory (DFT) enables the accurate prediction of many properties of high-temperatu...
Interatomic potentials for Ni-Al-V ternary systems have been developed based on the second-nearest-n...
Atomistic modeling plays a critical role in advancing our understanding of microstructure evolution ...
A computational model based on molecular dynamics and the embedded atom method (EAM) has been constr...