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¡°Vibration Analysis and Structural Optimization of Multifunctional Structures on Airborne Electronic Equipment¡±£¬Proceedings of the 2009 IEEE International Conference on Mechatronics and Automation, August 10-13, 2009, Changchun, pp.308-312.
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Originally posted by ´°ÍâÄǽÇÌì at 2010-09-18 12:15:06:
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ICMA2009

¡°Vibration Analysis and Structural Optimization of Multifunctional Structures on Airborne Electronic Equipment¡±£¬Proceedings of the ...

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Accession number:  20100912742924

Title:  Vibration analysis and structural optimization of multifunctional structures on airborne electronic equipment

Authors:  Qiao, Feng1 ; Huang, Dagui1 ; Feng, Wenjian1  

Author affiliation:  1  School of Mechatronics Engineering, University of Electronic Science and Technology of China, Chengdu, Sichuan Province, China


Corresponding author:  Qiao, F. (qiaofengJ66@sina.com)  

Source title:  2009 IEEE International Conference on Mechatronics and Automation, ICMA 2009

Abbreviated source title:  IEEE Int. Conf. Mechatronics Autom., ICMA

Monograph title:  2009 IEEE International Conference on Mechatronics and Automation, ICMA 2009

Issue date:  2009

Publication year:  2009

Pages:  308-312

Article number:  5246028

Language:  English

ISBN-13:  9781424426935

Document type:  Conference article (CA)

Conference name:  2009 IEEE International Conference on Mechatronics and Automation, ICMA 2009

Conference date:  August 9, 2009 - August 12, 2009

Conference location:  Changchun, China

Conference code:  79410

Sponsor:  IEEE Robotics and Automation Society; Changchun University of Science and Technology; Kagawa University

Publisher:  IEEE Computer Society, 445 Hoes Lane - P.O.Box 1331, Piscataway, NJ 08855-1331, United States

Abstract:  The finite element method was utilized in this paper to analyze multifunctional structures on airborne electronic equipment. The results of this analysis show that the strengthened tendons can improve the inherent frequency of the structure, the density of screws arrangement can also affect its inherent frequency, and the circuit of elements should be placed symmetrically. Finally a new type of multifunctional structure with high inherent frequency was designed which had a better anti-vibration performance than the old one. ©2009 IEEE.

Number of references:  11

Main heading:  Vibration analysis

Controlled terms:  Amplifiers (electronic)  -  Mechatronics  -  Oscillators (electronic)  -  Structural analysis  -  Structural optimization

Uncontrolled terms:  Airborne electronic equipment  -  Antivibration  -  Inherent frequencies  -  Multifunctional structures

Classification code:  943.2 Mechanical Variables Measurements  -  921.5 Optimization Techniques  -  913.4 Manufacturing  -  751.2 Acoustic Properties of Materials  -  731.7 Mechatronix  -  713.2 Oscillators  -  713.1 Amplifiers  -  608 Mechanical Engineering, General  -  408.1 Structural Design, General

DOI:  10.1109/ICMA.2009.5246028

Database:  Compendex

   Compilation and indexing terms, © 2010 Elsevier Inc.
2Â¥2010-09-18 15:09:50
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