Numerical method for frequency response in visco-embedded nanoplate
by M. Cinefra
International Journal of Hydromechatronics (IJHM), Vol. 2, No. 2, 2019

Abstract: Numerical solutions for frequency analysis of smart classic nanoplates located at viscoelastic medium are discussed by developing the Galerkin distributed strip transfer method of function. Utilising the non-local theory for piezoelectric materials and principle of Hamilton, the final equations and boundary conditions are first obtained, where external electric voltage, viscoelastic foundation, piezoelectric effect and non-local effect are considered simultaneously. Subsequently, the numerical method is developed to solve the final equations for the frequencies. Results from the model are also indicated to show the influences of non-local and viscoelastic medium and geometric dimensions on vibration responses of the plate.

Online publication date: Wed, 17-Jul-2019

The full text of this article is only available to individual subscribers or to users at subscribing institutions.

 
Existing subscribers:
Go to Inderscience Online Journals to access the Full Text of this article.

Pay per view:
If you are not a subscriber and you just want to read the full contents of this article, buy online access here.

Complimentary Subscribers, Editors or Members of the Editorial Board of the International Journal of Hydromechatronics (IJHM):
Login with your Inderscience username and password:

    Username:        Password:         

Forgotten your password?


Want to subscribe?
A subscription gives you complete access to all articles in the current issue, as well as to all articles in the previous three years (where applicable). See our Orders page to subscribe.

If you still need assistance, please email subs@inderscience.com