2012 Volume 21 Issue 8
Article Contents

Zhang Hui, Zhang Shu-Yi, Fan Li. 2012: Flexural resonance vibrations of piezoelectric ceramic tubes in Besocke-style scanners, Chinese Physics B, 21(8): 180-185. doi: 10.1088/1674-1056/21/8/083302
Citation: Zhang Hui, Zhang Shu-Yi, Fan Li. 2012: Flexural resonance vibrations of piezoelectric ceramic tubes in Besocke-style scanners, Chinese Physics B, 21(8): 180-185. doi: 10.1088/1674-1056/21/8/083302

Flexural resonance vibrations of piezoelectric ceramic tubes in Besocke-style scanners

  • Available Online: 30/12/2012
  • Fund Project: the National Basic Research Program of China(Grant 2012CB921504)%the National Natural Science Foundation of China(Grant .11004099 and 11174142)%the State Key Laboratory of Acoustics of the Chinese Academy of Sciences,and the Priority Academic Program Development of Jiangsu Higher Education Institutions
  • Flexural resonance vibrations of piezoelectric ceramic tubes in Besocke-style scanners with nanometer resolution are studied by using an electro-mechanical coupling Timoshenko beam model.Meanwhile,the effects of friction,the first moment,and moment of inertia induced by mass loads are considered.The predicted resonance frequencies of the ceramic tubes are sensitive to not only the mechanical parameters of the scanners,but also the friction acting on the attached shaking ball and corresponding bending moment on the tubes,The theoretical results are in excellent agreement with the related experimental measurements.This model and corresponding results are applicable for optimizing the structures and performances of the scanners.
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Flexural resonance vibrations of piezoelectric ceramic tubes in Besocke-style scanners

Abstract: Flexural resonance vibrations of piezoelectric ceramic tubes in Besocke-style scanners with nanometer resolution are studied by using an electro-mechanical coupling Timoshenko beam model.Meanwhile,the effects of friction,the first moment,and moment of inertia induced by mass loads are considered.The predicted resonance frequencies of the ceramic tubes are sensitive to not only the mechanical parameters of the scanners,but also the friction acting on the attached shaking ball and corresponding bending moment on the tubes,The theoretical results are in excellent agreement with the related experimental measurements.This model and corresponding results are applicable for optimizing the structures and performances of the scanners.

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