2009Journal of Machine DesignRequires access

Dynamics simulation on the hydraulic platform vehicle based on ADAMS and ANSYS

Cui Da-yan

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Abstract

By combining with the virtual prototype technique and the finite element analysis technique,and using the ADAMS software to carrying out dynamics simulation on the mechanics model of the main platform of certain typed hydraulic platform vehicle.Taking the force magnitude received by the hydraulic cylinder as a foundation,thereby the optimal position of the hydraulic cylinder has been gained.Utilizing the ANSYS software the finite element stress analysis was carried out on the fork scissors mechanism when its was at the maximum acceleration position.

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What this paper is about

By combining with the virtual prototype technique and the finite element analysis technique,and using the ADAMS software to carrying out dynamics simulation on the mechanics model of the main platform of certain typed hydraulic platform vehicle.Taking the force magnitude received by the hydraulic cylinder as a foundation,thereby the optimal position of the hydraulic cylinder has been gained.Utilizing the ANSYS software the finite element stress analysis was carried out on the fork scissors mechanism when its was at the maximum acceleration position.

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Available abstract

By combining with the virtual prototype technique and the finite element analysis technique,and using the ADAMS software to carrying out dynamics simulation on the mechanics model of the main platform of certain typed hydraulic platform vehicle.Taking the force magnitude received by the hydraulic cylinder as a foundation,thereby the optimal position of the hydraulic cylinder has been gained.Utilizing the ANSYS software the finite element stress analysis was carried out on the fork scissors mechanism when its was at the maximum acceleration position.

Key concepts: Hydraulic cylinder, Finite element method, Fork (system call), Engineering, Acceleration, Software, Cylinder, Hydraulic machinery

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