Sensitivity Analysis of Fiber-Reinforced Lamina Micro-Electro-Mechanical Switches with Nonlinear Vibration Using a Higher Order Hamiltonian Approach

سال انتشار: 1397
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 319

فایل این مقاله در 15 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_MACS-5-1_003

تاریخ نمایه سازی: 14 تیر 1399

چکیده مقاله:

In this paper, the nonlinear free vibration of fiber-reinforced lamina micro-switches is investigated, and a sensitivity analysis (SA) is given. The switches are modeled as solid rectangular beams consisting of an isotropic matrix with transversely and longitudinally isotropic reinforcements, incorporating a higher order Hamiltonian approach. An SA of the proposed micro-switch is presented by calculating the numerical derivatives of the presented nonlinear model with respect to the design parameters. The SA of geometric parameters, such as dimensionless length, thickness, initial gap, applied voltage, axial load, and effective modules of the system, was conducted using the Sobol method. It was found that the natural frequency varied when changes were made to the proposed parameters; this finding can be used to optimize future designs.

نویسندگان

Ali Kabiri

School of Railway Engineering, Iran University of Science and Technology (IUST), ۱۶۸۴۶-۱۳۱۱۴, Tehran, Iran

Sadegh Sadeghzadeh

Assistant Professor, Head of Smart Micro/Nano Electro Mechanical Systems Lab (SMNEMS Lab), School of New Technologies, Iran University of Science and Technology (IUST), ۱۶۸۴۶-۱۳۱۱۴, Tehran, Iran

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Yogeswaran U, Thiagarajan S, Chen S-M. Recent updates of DNA ...
  • Allen BL, Kichambare PD, Star A. Carbon nanotube field‐effect‐transistor‐based biosensors. ...
  • Atashbar MZ, Bejcek B, Singamaneni S, Santucci S. (2004). Carbon ...
  • Jain A, Goodson KE. Thermal microdevices for biological and biomedical ...
  • Korayem M, Sadeghzadeh S, Homayooni A. Semi-analytical motion analysis of ...
  • Korayem M, Homayooni A, Sadeghzadeh S. Semi-analytic actuating and sensing ...
  • Korayem M, Sadeghzadeh S, Homayooni A. Coupled dynamics of piezo-tube ...
  • Korayem M, Karimi A, Sadeghzadeh S. GDQEM analysis for free ...
  • Ghalambaz M, Ghalambaz M, Edalatifar M. Nonlinear oscillation of nanoelectro-mechanical ...
  • Abdel-Rahman EM, Younis MI, Nayfeh AH. Characterization of the mechanical ...
  • Kuang J-H, Chen C-J. Dynamic characteristics of shaped micro-actuators solved ...
  • Beléndez A, Beléndez T, Márquez A, Neipp C. Application of ...
  • He J-H. Variational approach for nonlinear oscillators. Chaos, Solitons & ...
  • He J-H. Max-min approach to nonlinear oscillators. International Journal of ...
  • Zeng D, Lee Y. Analysis of strongly nonlinear oscillator using ...
  • He J-H. Preliminary report on the energy balance for nonlinear ...
  • Ganji DD, Azimi M, Mostofi M. Energy balance method and ...
  • Ganji DD, Azimi M. Application of max min approach and ...
  • Yildirim A, Askari H, Yazdi MK, Khan Y. A relationship ...
  • Askari H, Nia ZS, Yildirim A, Yazdi MK, Khan Y. ...
  • Khan Y, Akbarzade M. Dynamic analysis of nonlinear oscillator equation ...
  • Fu Y, Zhang J, Wan L. Application of the energy ...
  • Bayat M, Bayat M, Pakar I. Nonlinear vibration of an ...
  • Yildirim A, Saadatnia Z, Askari H, Khan Y, KalamiYazdi M. ...
  • Rafieipour H, Lotfavar A, Masroori A. Analytical approximate solution for ...
  • Duan J, Li Z, Liu J. Pull-in instability analyses for ...
  • Zhu J, Liu R. Sensitivity analysis of pull-in voltage for ...
  • Ashrafi B, Hubert P, Vengallatore S. Carbon nanotube-reinforced composites as ...
  • Thostenson ET, Chou T-W. On the elastic properties of carbon ...
  • Hautamaki C, Zurn S, Mantell SC, Polla DL. Experimental evaluation ...
  • Spearing S. Materials issues in microelectromechanical systems (MEMS). Acta Mater. ...
  • He J-H. Hamiltonian approach to nonlinear oscillators. Phys. Lett. A ...
  • Younis MI, Nayfeh A. A study of the nonlinear response ...
  • Rao SS. Vibration of continuous systems. John Wiley & Sons; ...
  • Reddy JN. Mechanics of laminated composite plates and shells: theory ...
  • Pelesko JA, Bernstein DH. Modeling Mems and Nems. CRC press; ...
  • He J-H. Semi-inverse method of establishing generalized variational principles for ...
  • He J-H. Variational principles for some nonlinear partial differential equations ...
  • Bayat M, Pakar I. Application of Hes energy balance method ...
  • Jamshidi N, Ganji D. Application of energy balance method and ...
  • Shou D-H. Variational approach for nonlinear oscillators with discontinuities. Computers ...
  • Qian Y, Ren D, Lai S, Chen S. Analytical approximations ...
  • Saltelli A, Homma T. Sensitivity analysis for model output: performance ...
  • Hong W-l, Guo X-m. Deformation of metallic single-walled carbon nanotubes ...
  • Sobol IyM. On sensitivity estimation for nonlinear mathematical models. Matematicheskoe ...
  • نمایش کامل مراجع