Static responses for Graphene nanoplatlet reinforced aerobic sport plate

Zang Zhaowei, Song Zhiqiang, Li Aiyun, Mostafa Habibi, Ibrahim Albaijan, Dingfang Zhang

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

This work applies a detailed shear deformable based kinematic modeling of a graphene origami reinforced nanocomposite aerobic sport plate subjected to thermal and mechanical loading. The proposed model is application for analysis of the reinforced aerobic sport plate. The analytical bending analysis was performed using the virtual work principle. The behavioral relations were extended using the overall material properties derived from the previously developed relations of the experimental and statistical studies. The nanocomposite aerobic sport was composed of a copper matrix reinforced with graphene origami as a novel reinforcement. The overall material properties were developed with changes of thermal loads, volume fraction and folding parameter of aerobic sport plate. The numerical results were derived using the analytical works in terms of the significant import parameters. An increase in the displacements is observed with an increase in the thermal loads and folding parameter as well as decrease in volume fraction.

Original languageEnglish
Pages (from-to)565-583
Number of pages19
JournalAdvances in Nano Research
Volume18
Issue number6
DOIs
StatePublished - 2025

Keywords

  • aerobic plate
  • copper matrix
  • folding degree
  • graphene origami
  • micromechanical model
  • thickness stretched plate
  • volume fraction

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