Article ID Journal Published Year Pages File Type
780254 International Journal of Mechanical Sciences 2012 5 Pages PDF
Abstract

A dynamic torsional stiffness model of a magneto-sensitive circular annular rubber bushing is presented where influences of frequency, amplitude and magnetic field dependence are included. This is achieved by employing a newly developed non-linear magneto-sensitive audio frequency constitutive equation in an engineering formula for the torsional stiffness of a rubber bushing. The engineering stiffness formula predicts the frequency and amplitude dependent stiffness in a simple way, based on geometric dimensions and the shear modulus. The shear modulus is provided by the rubber model. The results from these calculations predict and clearly display the possibility of controlling the magneto-sensitive rubber bushing stiffness over a large frequency range, through the application of a magnetic field.

► A torsional stiffness model of a magneto-sensitive rubber bushing is presented. ► The influences of frequency, amplitude and magnetic field are included. ► The possibility of adaptively controlling the bushing stiffness is shown.

Keywords
Related Topics
Physical Sciences and Engineering Engineering Mechanical Engineering
Authors
, ,