Semi-Active Pulse-Switching SSDC Vibration Suppression using Magnetostrictive Materials

Publish Year: 1398
نوع سند: مقاله ژورنالی
زبان: English
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JR_JSMA-11-4_005

تاریخ نمایه سازی: 12 اسفند 1398

Abstract:

One of the best vibration control methods using smart actuators are semi-active approaches which are as strong as active methods and need no external energy supply such as passive ones. Compared with piezoelectric-based, magnetostrictive-based control methods have higher coupling efficiency, higher Curie temperature, higher flexibility to be integrated with curved structures and no depolarization problems. Semi-active methods are well-developed for piezoelectrics but magnetostrictive-based approaches are not as efficient, powerful and well-known as piezoelectric-based methods.  The aim of this work is to propose a powerful semi-active control method using magnetostrictive actuators. In this paper a new type of semi-active suppression methods using magnetostrictive materials is introduced which contains an equipped vibrating structure with magnetostrictive patches wound by a pick-up coil connected to an electronic switch and a capacitor. The novelty of the proposed damping method is switching on the coil current signal using mentioned switch and capacitor which is briefly named SSDC (synchronized switch damping on capacitor). In this paper the characteristics of the semi-active pulse-switching damping technique with magnetostrictive materials are studied and numerical results show significant damping for almost all types of excitations.  

Authors

S Mohammadi

Mechanical Engineering Department, Razi University, Kermanshah, Iran

S Hatam

Mechanical Engineering Department, Razi University, Kermanshah, Iran

A Khodayari

Mechanical Engineering Department, Razi University, Kermanshah, Iran

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  • Davis C.L., Lesieutre G.A., 2000, An actively tuned solid-state vibration ...
  • Rao M.D., 2003, Recent applications of viscoelastic damping for noise ...
  • Hongli J., Jinhao Q., Kongjun Z., 2010, Vibration control of ...
  • Corr L.R., Clark W.W., 2003, A novel semi-active multi-modal vibration ...
  • Guyomar D., Richard C., Mohammadi S., 2007, Semi-passive random vibration ...
  • Clark W.W., 1999, Semi-active vibration control with piezoelectric materials as ...
  • Badel A., Sebald G., Guyomar D., Lallart M., Lefeuvre E., ...
  • Honhli J., Qiu J., Badel A., 2009, Semi active vibration ...
  • Singhal A., Sahu S. A., Chaudhary S., 2018, Approximation of ...
  • Singh M. K., Sahu S. A., Singhal A., Chaudhary S., ...
  • Singhal A., Sahu S. A., Chaudhary S., 2018, Liouville-Green approximation: ...
  • Kumar J.S., Ganesan N., Swarnamani S., Padmanabhan C., 2003, Active ...
  • Hernando A., Vazquez M., Barandiaran J.M., 1988, Metallic glasses and ...
  • Savage H.T., Spano M.L., 1982, Theory and application of highly ...
  • Huang J., O Handley R.C., Bono D., 2003, New, high-sensitivity, ...
  • May C., Kuhnen K., Pagliaruolo P., Janocha H., 2003, Magnetostrictive ...
  • Kumar J.S., Ganesan N., Swarnamani S., Padmanabhan C., 2003, Active ...
  • Moon S.J., Lim C.W., Kim B.H., Park Y., 2007, Structural ...
  • Bartlet P.A., Eaton S.J., Gore J., Metheringham W.J., Jenner A.G., ...
  • Zhang T., Jang C., Zhang H., Xu H., 2004, Giant ...
  • Braghin F., Cinquemani S., Resta F., 2011, A model of ...
  • Krishna Murty A.V., Anjanappa M., Wu Y. F., 1997, The ...
  • Reddy J.N., Barbosa J.I., 1999, Vibration suppression of composite laminates ...
  • Dapino M.J., 2004, On magnetostrictive materials and their use in ...
  • Mohammadi S., Hatam S., Khodayari A., 2013, Modelling of a ...
  • Wang L., 2007, Vibration Energy Harvesting by Magnetostrictive Materials for ...
  • Naeem W., 2009, Concepts in Electronic Circuits, Ventus Publishing ApS. ...
  • Alam P., Kundu S., Gupta S., 2017, Dispersion and attenuation ...
  • Kundu S., Alam P., Gupta S., Pandit D. Kr., 2017, ...
  • Alam P., Kundu S., Gupta S., 2018, Dispersion and attenuation ...
  • Saidi I., Gad E. F., Wilson J. L., Haritos N., ...
  • Cremer L., Heckl M., 1988, Structure-Borne Sound, Springer-Verlag Press, New ...
  • Dewangan P., 2009, Passive Viscoelastic Constrained Layer Damping for Structural ...
  • Marsh E.R., Hale L.C., 1998, Damping of flexural waves with ...
  • Rongong J.A., Wright J.R., Wynne R.J., Tomlinson G.R., 1997, Modeling ...
  • Staley M.H., 2005, Development of a Prototype Magnetostrictive Energy Harvesting ...
  • نمایش کامل مراجع