364
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

Nonlinear bending of temperature-dependent FG-CNTRC laminated plates with negative Poisson’s ratio

, &
Pages 1141-1153 | Received 07 Oct 2019, Accepted 21 Dec 2019, Published online: 31 Jan 2020
 

Abstract

The nonlinear bending behavior of nanocomposite laminated plates with negative Poisson’s ratios (NPR) is reported. Each ply of the plate is made of carbon nanotube-reinforced composites (CNTRCs) and may have different CNT volume fractions and the CNTRC plies are arranged in the thickness direction in a piece-wise functionally graded pattern. The plate is supposed to be rested on a two-parameter elastic foundation and is exposed in a thermal environment. The temperature-dependent material properties of the CNTRCs are evaluated using an extended Voigt (rule of mixture) model. The governing equations for the nonlinear bending of FG-CNTRC laminated plates are based on Reddy’s third order shear deformation plate theory and solved by using a two-step perturbation approach. Analytical solutions are obtained which include the geometrical nonlinearity in the von Kármán sense, the thermal effects and the plate-foundation interaction. The effect of NPR on the nonlinear bending responses of FG-CNTRC laminated plates under different loading conditions are investigated comparatively according to the graphical results. It is explicitly shown that NPR has a significant effect on the nonlinear bending responses of CNTRC laminated plates.

Disclosure statement

The authors declare that there are no conflicts of interests with publication of this work.

Funding

This study was supported by the National Natural Science Foundation of China under Grant 51779138. The first author is grateful for this financial support. The second and third authors are also grateful for the supports from the Science Research Plan of Shanghai Municipal Science and Technology Committee under Grant 18DZ1205603, and the Innovation Program of Shanghai Municipal Education Commission under Grant 14ZZ027.

Log in via your institution

Log in to Taylor & Francis Online

PDF download + Online access

  • 48 hours access to article PDF & online version
  • Article PDF can be downloaded
  • Article PDF can be printed
USD 61.00 Add to cart

Issue Purchase

  • 30 days online access to complete issue
  • Article PDFs can be downloaded
  • Article PDFs can be printed
USD 423.00 Add to cart

* Local tax will be added as applicable

Related Research

People also read lists articles that other readers of this article have read.

Recommended articles lists articles that we recommend and is powered by our AI driven recommendation engine.

Cited by lists all citing articles based on Crossref citations.
Articles with the Crossref icon will open in a new tab.