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Application of a folded nanostructure reinforcement for the pole vault curved shell
Journal
Mechanics of Advanced Materials and Structures
ISSN
1537-6532
Date Issued
2024-07-08
Author(s)
Song Zhiqiang
Li Aiyun
Zhao Daichang
Li Shuangjun
Mostafa Habibi
Feng Xiaoling
Ibrahim Albaijan
Abstract
Foldability capacity is now introduced as a novel nanofiller reinforcement production procedure using some operation to control the mechanical, thermal and electrical properties in the sport equipment. Application of this type of nanofillers in the curved structures like pole vault shell leads to a novel engineering and sport shell shape structures. This article is organized to suggest a vibration-based formulation for analysis of folded reinforced curved shell sport structure subjected to thermal and mechanical loading.
Using computation of kinetic, strain and external energies, one can arrive the motion’s equations using the minimization of total energy and Hamilton’s principle. Using solution of the motion’s equations through an analytical approach, the parametric analysis is presented. The verified test is presented for confirmation of the solution and trend of results.
Using computation of kinetic, strain and external energies, one can arrive the motion’s equations using the minimization of total energy and Hamilton’s principle. Using solution of the motion’s equations through an analytical approach, the parametric analysis is presented. The verified test is presented for confirmation of the solution and trend of results.