Design and development of a high force actuator using giant magnetostrictive material

With the maturity of manufacturing process for the giant magnetostrictive material called Terfenol-D, high force and high precision actuators can now be realized at a reasonable cost. These actuators can be used in many applications, one of them being the control of machine chatter vibration. Thi...

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Main Author: Fung, Kam
Format: Others
Language:English
Published: 2009
Online Access:http://hdl.handle.net/2429/4313
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-43132018-01-05T17:31:55Z Design and development of a high force actuator using giant magnetostrictive material Fung, Kam With the maturity of manufacturing process for the giant magnetostrictive material called Terfenol-D, high force and high precision actuators can now be realized at a reasonable cost. These actuators can be used in many applications, one of them being the control of machine chatter vibration. This violent phenomenon is one of the limiting factors on how fast a metal-cutting operation can proceed. In chapter 1 a discussion of chatter vibration is presented. Terfenol-D possesses some unique properties that affect actuator design; therefore an understanding of the magnetoelastic mechanism is essential. A basic discussion of magnetic material is first presented in appendix A; then properties unique to Terfenol-D are discussed in chapter 2. The design of the actuator at UBC is presented in chapter 3. It incorporates many features not found in existing designs. In particular, the push-pull configuration makes it suitable for applications requiring bi-directional movements. Preliminary test results of the device built are presented in chapter 4. Before Terfenol-D can be widely used, however, the problem of modelling and control has to be solved. Because of hysteresis and other nonlinearities, ordinary linear design techniques may not be applicable. Some promising nonlinear control strategies based on Preisach model and neural networks are discussed in the last chapter. Applied Science, Faculty of Electrical and Computer Engineering, Department of Graduate 2009-02-09T22:49:41Z 2009-02-09T22:49:41Z 1996 1996-05 Text Thesis/Dissertation http://hdl.handle.net/2429/4313 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. 6651215 bytes application/pdf
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language English
format Others
sources NDLTD
description With the maturity of manufacturing process for the giant magnetostrictive material called Terfenol-D, high force and high precision actuators can now be realized at a reasonable cost. These actuators can be used in many applications, one of them being the control of machine chatter vibration. This violent phenomenon is one of the limiting factors on how fast a metal-cutting operation can proceed. In chapter 1 a discussion of chatter vibration is presented. Terfenol-D possesses some unique properties that affect actuator design; therefore an understanding of the magnetoelastic mechanism is essential. A basic discussion of magnetic material is first presented in appendix A; then properties unique to Terfenol-D are discussed in chapter 2. The design of the actuator at UBC is presented in chapter 3. It incorporates many features not found in existing designs. In particular, the push-pull configuration makes it suitable for applications requiring bi-directional movements. Preliminary test results of the device built are presented in chapter 4. Before Terfenol-D can be widely used, however, the problem of modelling and control has to be solved. Because of hysteresis and other nonlinearities, ordinary linear design techniques may not be applicable. Some promising nonlinear control strategies based on Preisach model and neural networks are discussed in the last chapter. === Applied Science, Faculty of === Electrical and Computer Engineering, Department of === Graduate
author Fung, Kam
spellingShingle Fung, Kam
Design and development of a high force actuator using giant magnetostrictive material
author_facet Fung, Kam
author_sort Fung, Kam
title Design and development of a high force actuator using giant magnetostrictive material
title_short Design and development of a high force actuator using giant magnetostrictive material
title_full Design and development of a high force actuator using giant magnetostrictive material
title_fullStr Design and development of a high force actuator using giant magnetostrictive material
title_full_unstemmed Design and development of a high force actuator using giant magnetostrictive material
title_sort design and development of a high force actuator using giant magnetostrictive material
publishDate 2009
url http://hdl.handle.net/2429/4313
work_keys_str_mv AT fungkam designanddevelopmentofahighforceactuatorusinggiantmagnetostrictivematerial
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