2007Agricultural Equipment & Vehicle EngineeringRequires access

Kinematic and Dynamic Analysis and Study on the Hoisting Device of an Equipment

Junwei Hu

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Abstract

To develop a product with virtual prototyping is one of the modern design methods, its main point is to establish the computer virtual prototype model of the developing system. In this paper, using the ADAMS (Automatic Dynamic Analysis of Mechanical Systems), a virtual prototype for hoisting device of an equipment is set up and tested, its kinematic and dynamic performance is simulated and analyzed, the various forces and load parameters of each component in the action of the whole mechanism is calculated, the force data of the hoisting device at different status are provided for finite element analysis.

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What this paper is about

To develop a product with virtual prototyping is one of the modern design methods, its main point is to establish the computer virtual prototype model of the developing system. In this paper, using the ADAMS (Automatic Dynamic Analysis of Mechanical Systems), a virtual prototype for hoisting device of an equipment is set up and tested, its kinematic and dynamic performance is simulated and analyzed, the various forces and load parameters of each component in the action of the whole mechanism is calculated, the force data of the hoisting device at different status are provided for finite element analysis.

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Available abstract

To develop a product with virtual prototyping is one of the modern design methods, its main point is to establish the computer virtual prototype model of the developing system. In this paper, using the ADAMS (Automatic Dynamic Analysis of Mechanical Systems), a virtual prototype for hoisting device of an equipment is set up and tested, its kinematic and dynamic performance is simulated and analyzed, the various forces and load parameters of each component in the action of the whole mechanism is calculated, the force data of the hoisting device at different status are provided for finite element analysis.

Key concepts: Kinematics, Virtual prototyping, Engineering, Mechanism (biology), Finite element method, Component (thermodynamics), Point (geometry), Dynamic simulation

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