Steel and Composite Structures

Volume 46, Number 1, 2023, pages 133-141

DOI: 10.12989/scs.2023.46.1.133

Wave propagation in spherical and cylindrical panels reinforced with carbon nanotubes

Yi-Wen Zhang, Hao-Xuan Ding and Gui-Lin She

Abstract

Based on the third-order shear deformation theory, the wave propagations in doubly curved spherical- and cylindrical- panels reinforced by carbon nanotubes (CNTs) are firstly investigated in present work. The coupled equations of wave propagation for the carbon nanotubes reinforced composite (CNTRC) doubly curved panels are established. Then, combined with the harmonic balance method, the eigenvalue technique is adopted to simulate the velocity-wave number curves of the CNTRC doubly curved panels. In the end, numerical results are showed to discuss the effects of the impact of key parameters including the volume fraction, different shell types (including spherical (R1=R2=R) and cylindrical (R1=R, R2=->

Key Words

carbon nanotube reinforced composites; doubly curved shells; harmonic balance method; wave propagation

Address

Yi-Wen Zhang, Hao-Xuan Ding and Gui-Lin She: College of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044, China