Researching of the Active and the Passive Damping of Syntactic Foam and Piezoelectric Composite

Article Preview

Abstract:

This paper mainly states that under the PID program control, syntactic foam cantilever beam and piezoelectric composite cantilever beam which are studied with the momentary force and the alternating force signal, in the effective of active damping. The vibration stopping time changes under the momentary force and the amplitude changes under the alternating force signal. Comparing under the same initial amplitude, the amplitude changes of syntactic foam cantilever beam and piezoelectric composite cantilever beam under the active damping.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

119-122

Citation:

Online since:

November 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Chen Zhangwei, Yu Huijun. Existing state and development of vibration control technology. Journal of vibrate and shock. 2009. 28(3).

Google Scholar

[2] Jia C L. Study on damping behavior of FeAl3 reinforced commercial aluminum. Master Des, 2007, 28.

Google Scholar

[3] Hoi M, Aoki T, Ohira Y. New type of mechanical damping composites of composed of piezoelectric ceramics, carbon black and epoxy resin. Composites, 2001, 32.

DOI: 10.1016/s1359-835x(00)00141-x

Google Scholar

[4] Li Guang. Research on active vibration control using combined Fuzzy-PID control approach, 2008. 1.

Google Scholar

[5] Su Ming, Chen Lunjun, Lin Hao. Study of Fuzzy PID control, 2004. 4, 51-55.

Google Scholar

[6] Zhu Denglin, Lv Rui, Yu jie. Integrated optimal design of the PZT Position, size and control of smart cantilever beam, 2009. 2, 45(2).

Google Scholar

[7] Huang Yiqing. Research on parameter tuning of PID controller and its application. 2009. 5.

Google Scholar