Thermally Induced Nonlinear Bending and Stability of Nanocomposite Curved Pipes Reinforced by CNTs

Author:

Hung Chen-Chih1,Wang Gui2,Wu Zhixin34,Wang Lai-Wang1

Affiliation:

1. Department of Industrial Engineering and Management, National Kaohsiung University of Science and Technology, Kaohsiung 807618, Taiwan

2. China Construction Second Engineering Bureau Ltd., Beijing 100000, P. R. China

3. College of Business Administration, Zhejiang University of Finance & Economics, Dongfang College, Haining 314408, Zhejiang, P. R. China

4. College of Business Administration, Zhejiang University of Finance & Economics, Hangzhou 310018, Zhejiang, P. R. China

Abstract

This research is concerned with the thermal bending and stability of temperature-dependent nanocomposite curved pipes strengthened with carbon nanotubes (CNTs) subjected to uniform temperature rise. Thermo-mechanical characteristics of the polymer composite pipe are assumed to vary entirely in the thickness by a non-uniform function of the radius. Five different patterns are selected to model the propagation profile of CNTs amongst the pipe thickness. Based on the shear deformation and von-Karman kinematic hypothesis, nonlinear balance equations of the polymer curved pipe are determined via varying the total potential energy of the system. Governing equations as a set of coupled nonlinear differential equations are analytically solved using a perturbation-based technique. Closed-form solutions are derived to estimate large-amplitude deflection of nanocomposite curved pipes with pinned and clamped boundaries under uniform thermal loading. The obtained results show the influences of important parameters such as material/geometrical characteristics and foundation stiffness on the thermally induced nonlinear response of polymer nanocomposite curved pipes.

Publisher

World Scientific Pub Co Pte Ltd

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