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The mathematical model and frequency characteristics of giant magnetostrictive actuator

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
Computer Applications in Electrical Engineering 2010 [Poznań, April 19-21, 2010]
Języki publikacji
EN
Abstrakty
EN
In the last 30 years, discovery of Terfenol-D has led to development of magnetostrictive actuators. In the paper the mathematical model of magnetostrictive actuator is presented. The model is suitable to describe relation between the input magnetic field, the magnetization in the magnetostrictive rod, the output displacement, magnetostriction and the strain of magnetostriction actuator. Frequency characteristics of giant magnetostrictive actuator are obtained. The selected results of calculations are compared and discussed.
Rocznik
Tom
Strony
127--136
Opis fizyczny
Bibliogr. 10 poz.
Twórcy
  • Poznan University of Technology
Bibliografia
  • [1] Bushko D.A. and Goldie J.H.: High performance magnetostrictive actuators, IEEE Aerospace and Electronic Systems Magazine, vol. 6, 1991, pp. 21-25.
  • [2] Calkins F.T., Smith R.C., Flatau A.B.: An Energy-Based Hysteresis Model for Magnetostrictive Transducers. IEEE Trans. on Magnetic, Vol. 36. No. 2, 2000, pp. 429-439.
  • [3] Cao Y., Wang B. W., Yan R. G., Huang W. M., and Weng L.: Dynamic model with hysteretic nonlinearity for magnetostrictive actuators, ICEMS International Conference on Electrical Machines and Systems, 2003, pp. 706-709.
  • [4] Claeyssen F., Lhermet N., Le Letty R. and Bouchilloux P.: Actuators transducers and motors based on giant magnetostrictive materials, Journal of Alloys and Compounds, vol. 258, 1997, pp. 61-73.
  • [5] Engdahl G.: Handbook of giant magnetostrictive materials. San Diego, USA: Academic Press; 2000.
  • [6] ETREMA Products, Inc. - information available from: http://www.etrema.com.
  • [7] Olabi A.G., Grunwald A.: Design and application of magnetostrictive materials, Materials and Design 28, 2008, pp. 469-483.
  • [8] Shang X., Pan E., Qin L.: Mathematical modeling and numerical computation for the vibration of a magnetostrictive actuator. Smart materials and structures (17), 2008. Paper No. 045026.
  • [9] SPK ZLX Tech Industry Co. (TbDy)Fe2 Giant Magnetostrictive Material-GMM characteristics, www.zlxtech.com.cn
  • [10] Yong Y., Lin L.: Dynamic model considering the ΔE effect for giant magnetostrictive actuators, IEEE International Conference on Control and Automation, Christchurch, Nowa Zelandia, 2009, pp. 667-672.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP4-0002-0055
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