Advances in Nano Research

Volume 13, Number 4, 2022, pages 369-378

DOI: 10.12989/anr.2022.13.4.369

Dynamic analysis of viscoelastic concrete plates containing nanoparticle subjected to low velocity impact load

Jijun Luo, Meng Lv, Suxia Hou, Mohsen Nasihatgozar and Amir Behshad

Abstract

Dynamic study of concrete plates under impact load is presented in this article. The main objective of this work is presenting a mathematical model for the concrete plates under the impact load. The concrete plate is reinforced by carbon nanoparticles which the effective material proprieties are obtained by mixture's rule. Impacts are assumed to occur normally over the top layer of the plate and the interaction between the impactor and the structure is simulated using a new equivalent three-degree-of-freedom (TDOF) spring–mass–damper (SMD) model. The structure is assumed viscoelastic based on Kelvin-Voigt model. Based on the classical plate theory (CPT), energy method and Hamilton's principle, the motion equations are derived. Applying DQM, the dynamic deflection and contact force of the structure are calculated numerically so that the effects of mass, velocity and height of the impactor, volume percent of nanoparticles, structural damping and geometrical parameters of structure are shown on the dynamic deflection and contact force. Results show that considering structural damping leads to lower dynamic deflection and contact force. In addition, increasing the volume percent of nanoparticles yields to decreases in the deflection.

Key Words

concrete plate; CPT; low velocity impact; nanoparticles; numerical method

Address

Jijun Luo: Shaanxi Engineering Research Center of Controllable Neutron Source, Xijing University of School of Electronic Information, Xijing University, Xi'an 710123, Shaanxi, China Meng Lv: China Construction Seventh Engineering Division Corp., LTD., Zhengzhou 450000, Henan, China Suxia Hou: Shaanxi Engineering Research Center of Controllable Neutron Source, Xijing University of School of Electronic Information, Xijing University, Xi'an 710123, Shaanxi, China Mohsen Nasihatgozar: Department of mechanical engineering, Kashan Branch, Islamic Azad University, Kashan, Iran Amir Behshad: Faculty of Technology and Mining, Yasouj University, Choram 75761-59836, Iran