location: Current position: Home >> Scientific Research >> Paper Publications

A linear complementarity method for the solution of vertical vehicle-track interaction

Hits:

Indexed by:期刊论文

Date of Publication:2018-02-01

Journal:VEHICLE SYSTEM DYNAMICS

Included Journals:SCIE、EI、Scopus

Volume:56

Issue:2

Page Number:281-296

ISSN No.:0042-3114

Key Words:Vehicle-track interaction; nonlinear wheel-rail contact; linear complementarity problem; separation

Abstract:A new method is proposed for the solution of the vertical vehicle-track interaction including a separation between wheel and rail. The vehicle is modelled as a multi-body system using rigid bodies, and the track is treated as a three-layer beam model in which the rail is considered as an Euler-Bernoulli beam and both the sleepers and the ballast are represented by lumped masses. A linear complementarity formulation is directly established using a combination of the wheel-rail normal contact condition and the generalised- method. This linear complementarity problem is solved using the Lemke algorithm, and the wheel-rail contact force can be obtained. Then the dynamic responses of the vehicle and the track are solved without iteration based on the generalised- method. The same equations of motion for the vehicle and track are adopted at the different wheel-rail contact situations. This method can remove some restrictions, that is, time-dependent mass, damping and stiffness matrices of the coupled system, multiple equations of motion for the different contact situations and the effect of the contact stiffness. Numerical results demonstrate that the proposed method is effective for simulating the vehicle-track interaction including a separation between wheel and rail.

Pre One:An efficient method for the dynamic responses of periodic structures based on the physical features of the structure and group theory

Next One:An accurate method for the dynamic behavior of tensegrity structures