Audio Range Dynamic Models and Controllability of Linear Motion Terfenol Actuators

Author:

Bryant Michael D.1,Ning Wang 1

Affiliation:

1. Mechanical Engineering The University of Texas at Austin Austin, Texas 78712-1063

Abstract

Fourth and sixth order models for the audio range response of a dynamically continuous, linear motion magnetostric tive terfenol actuator are formulated from physical considerations and presented. Values of model parameters are derived from mate rial values (if the values are a priori known) or measured. The actuator involves a continuous rod of terfenol that extends and con tracts, vibrates in modes, and contains internal physical feedback loops due to inverse magnetostrictive effect and back emf. Motions of the right end of the magnetostrictive rod with respect to the left end are described in terms of lumped dynamic models. Methods for extracting a priori unknown dynamic parameters in the pres ence of the internal physical feedback are outlined. For audio range operation, theory and experiment compare well. It is also shown that interactions between the first and second vibration modes of the continuous rod give rise to nonminimum phase zeroes in the sixth order transfer function, which under conditions of feedback could contribute to instability and/or make active vibration control difficult over an extended bandwidth.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Materials Science

Reference6 articles.

1. Butler, J.L. 1988 Application Manual for the Design of Etrema Terfenol Magnetostrictive Transducers. Ames, IA: Edge Technologies Inc., pp. 11-12.

2. Right half plane poles and zeros and design tradeoffs in feedback systems

3. Harris, C.M. 1988. Shock and Vibration Handbook, 3rd Edition. New York: McGraw Hill, pp. 7-9.

4. Attenuation and transformation of vibration through active control of magnetostrictive terfenol

5. Moon, F.C. 1984. Magneto-Solid Mechanics. New York: Wiley, pp. 37-40, 298-308.

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