مشخصات پژوهش

صفحه نخست /Free vibration of deep and ...
عنوان Free vibration of deep and shallow curved FG nanobeam based on nonlocal elasticity
نوع پژوهش مقاله‌ی منتشر شده در نشریه
کلیدواژه‌ها analytical solution; deep and shallow curved beam; deepness effect; free vibration; functionally graded nanobeam; nano structure
چکیده In this paper, the effect of deepness on in-plane free vibration behavior of a curved functionally graded (FG) nanobeam based on nonlocal elasticity theory has been investigated. Differential equations and boundary conditions have been developed based on Hamilton’s principle. In order to figure out the size effect, nonlocal theory has been adopted. Properties of material vary in radial direction. By using Navier solution technique, the amount of natural frequencies has been obtained. Also, to take into account the deepness effect on vibrations, thickness to radius ratio has been considered. Differences percentage between results of cases in which deepness effect is included and excluded are obtained and influences of power-law exponent, nonlocal parameter and arc angle on these differences percentage are studied. Results show that arc angle and power law exponent parameters have the most influences on the amount of the differences percentage due to deepness effect. It has been observed that the inclusion of geometrical deep term and material distribution results in an increase in sensitivity of dimensionless natural frequency about variation of aforementioned parameters and a change in variation range of natural frequency. Finally, several numerical results of deep and shallow curved functionally graded nanobeams with different geometry dimensions are presented, which may serve as benchmark solutions for the future research in this field.
پژوهشگران سید امیرحسین حسینی (نفر اول)، مهدی منتظری پور (نفر پنجم)، امید رحمانی (نفر دوم)، وحید رفائی نژاد (نفر سوم)، حسن گل‌محمدی (نفر چهارم)