Free Vibration of Functionally Graded Material Plates by the Artificial Neural Network

Message:
Article Type:
Research/Original Article (بدون رتبه معتبر)
Abstract:

Present research work aims to analyze free vibration of rectangular Functionally Graded Material Plates with Non-ideal simply supported boundary conditions which one of its edges has small non-zero deflection and moment. Using the classical theory of plates, the governing equations of the plates are obtained, using perturbation theory, the equation of the plane and the critical frequency are calculated. By Training neural networks intend to determine the critical frquancy functionally graded plates by various input parameters length, width and Integer half-wave coefficients. In this article, the back propagation method is used to design the neural network algorithm and Using Matlab software, modeling and estimation of the critical vibration frequency for different modes have been done based on the parameters affecting the plates. Using the model designed by the neural network, it has been shown that the estimated natural frequency error is less than 0.005.

Language:
Persian
Published:
Journal of New Achievements in Electrical, Computer and Technology, Volume:3 Issue: 8, 2024
Pages:
24 to 36
magiran.com/p2664348  
دانلود و مطالعه متن این مقاله با یکی از روشهای زیر امکان پذیر است:
اشتراک شخصی
با عضویت و پرداخت آنلاین حق اشتراک یک‌ساله به مبلغ 1,390,000ريال می‌توانید 70 عنوان مطلب دانلود کنید!
اشتراک سازمانی
به کتابخانه دانشگاه یا محل کار خود پیشنهاد کنید تا اشتراک سازمانی این پایگاه را برای دسترسی نامحدود همه کاربران به متن مطالب تهیه نمایند!
توجه!
  • حق عضویت دریافتی صرف حمایت از نشریات عضو و نگهداری، تکمیل و توسعه مگیران می‌شود.
  • پرداخت حق اشتراک و دانلود مقالات اجازه بازنشر آن در سایر رسانه‌های چاپی و دیجیتال را به کاربر نمی‌دهد.
In order to view content subscription is required

Personal subscription
Subscribe magiran.com for 70 € euros via PayPal and download 70 articles during a year.
Organization subscription
Please contact us to subscribe your university or library for unlimited access!