A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filtering is used to calculate contact forces and rail vibrations with a time-domain wheel-track interaction model. In the proposed method, the full three-dimensional contact geometry is reduced to a point contact in order to lower the computational cost and to reduce the amount of required input roughness-data. Greens functions including the linear dynamics of the wheel and the track are coupled with a point contact model, leading to a numerically efficient model for the wheel-track interaction. Nonlinear effects due to the shape and roughness of the wheel and the rail surfaces are included in the point contact model by pre-calculation of functions ...
Road vehicle tyres, railway wheels and ball bearings all generate rolling contact forces which are t...
This paper presents results from simulations of railhead wear due to initial sinusoidal and broad-ba...
The dynamics of the railway vehicles is strongly influenced by the interaction between the wheel and...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
\u3cp\u3eA state-dependent contact model including nonlinear contact stiffness and nonlinear contact...
Rolling noise is excited by the roughness of the wheel/rail running surfaces. The contact patch acts...
A time domain wheel/rail interaction model in the vertical direction is developed taking account of ...
For efficient transportation in either trains, busses or passenger cars, rolling elements such as wh...
The prediction of impact forces caused by wheel flats requires the application of time-domain models...
The interaction between wheel and rail is the predominant source of noise emission from railway oper...
This paper presents results from simulations of railhead wear due to initial sinusoidal and broad-ba...
Road vehicle tyres, railway wheels and ball bearings all generate rolling contact forces which are t...
Road vehicle tyres, railway wheels and ball bearings all generate rolling contact forces which are t...
This paper presents results from simulations of railhead wear due to initial sinusoidal and broad-ba...
The dynamics of the railway vehicles is strongly influenced by the interaction between the wheel and...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
A state-dependent contact model including nonlinear contact stiffness and nonlinear contact filterin...
\u3cp\u3eA state-dependent contact model including nonlinear contact stiffness and nonlinear contact...
Rolling noise is excited by the roughness of the wheel/rail running surfaces. The contact patch acts...
A time domain wheel/rail interaction model in the vertical direction is developed taking account of ...
For efficient transportation in either trains, busses or passenger cars, rolling elements such as wh...
The prediction of impact forces caused by wheel flats requires the application of time-domain models...
The interaction between wheel and rail is the predominant source of noise emission from railway oper...
This paper presents results from simulations of railhead wear due to initial sinusoidal and broad-ba...
Road vehicle tyres, railway wheels and ball bearings all generate rolling contact forces which are t...
Road vehicle tyres, railway wheels and ball bearings all generate rolling contact forces which are t...
This paper presents results from simulations of railhead wear due to initial sinusoidal and broad-ba...
The dynamics of the railway vehicles is strongly influenced by the interaction between the wheel and...