CIVILICA We Respect the Science
(ناشر تخصصی کنفرانسهای کشور / شماره مجوز انتشارات از وزارت فرهنگ و ارشاد اسلامی: ۸۹۷۱)

Nonlinear Primary Frequency Response Analysis of Self-‎Sustaining Nanobeam Considering Surface Elasticity

عنوان مقاله: Nonlinear Primary Frequency Response Analysis of Self-‎Sustaining Nanobeam Considering Surface Elasticity
شناسه ملی مقاله: JR_JACM-8-4_006
منتشر شده در در سال 1401
مشخصات نویسندگان مقاله:

Habib Ramezannejad Azarboni - Department of Mechanical Engineering, Ramsar branch, Islamic Azad University, Ramsar, +۹۸ ۱۱ ۵۵۲۶۰۵۴۰, Iran
Hamidreza Heidari - Faculty of Mechanical Engineering, Malayer University, Parastar Blvd., Malayer ۶۵۷۱۹-۹۵۸۶۳, Iran‎

خلاصه مقاله:
This paper is focused to investigate the effects of nonlinear sources, including viscoelastic foundation and geometrical nonlinearity along with the surface elasticity and residual surface stress effects on the primary frequency response of a harmonically excited nanoscale Bernoulli-Euler beam. Due to large surface-area-to-volume ratio, the theory of surface elasticity as well as residual surface stress effects are taken into account within the beam models. The Galerkin approach accompanied by trigonometric shape functions is utilized to reduce the governing PDEs of the system to ODEs. The multiple scales perturbation method theory is applied to compute the nonlinear frequency response of nanobeam. The effects of linear and nonlinear viscoelastic damping coefficient of the medium, crystallographic directions of [۱۰۰] and [۱۱۱] of anodic alumina, geometrical nonlinear term and geometrical property on the nonlinear primary frequency response of nanoscale beam are investigated. The results show that theses parameters have a significant effect on the nonlinear frequency response of nanobeams in the case of primary resonance. 

کلمات کلیدی:
Self-Sustaining Nanobeam, Primary Resonance, Surface Elasticity, Viscoelastic Medium, Crystallographic ‎Directions

صفحه اختصاصی مقاله و دریافت فایل کامل: https://civilica.com/doc/1478904/