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Vibration analysis and control of cracked beam using finite element method by using ANSYS

Lalit K. Toke (Department of Mechanical Engineering, Sandip Institute of Engineering and Management, Nashik, India)
Milind M. Patil (Department of Mechanical Engineering, Sandip Institute of Technology and Research Centre, Nashik, India)

World Journal of Engineering

ISSN: 1708-5284

Article publication date: 26 May 2022

Issue publication date: 21 August 2023

130

Abstract

Purpose

The purpose of this paper is to develop an organized structure for damage detection of a cracked cantilever beam using finite element method and experimental method technique.

Design/methodology/approach

Due to presence of cracks the dynamic characteristics of structure change. The change in dynamic behavior has been used as one of the criteria of fault diagnosis for structures. Major characteristics of the structure which undergo change due to presence of crack are: natural frequencies, the amplitude responses due to vibration and the mode shapes. Therefore, an attempt has been made to formulate a smart technique for minimizing the amplitude of vibration for crack cantilever beam structures. In the analysis both single and double cracks are taken into account.

Findings

The results of the active vibration control experiments proved that piezoelectric sensor/actuator pair is an effective sensor and actuator configuration for active vibration control to reduce the amplitude of vibration for closed-loop system.

Originality/value

It is necessary that structures must safely work during its service life, but damages initiate a breakdown period on the structures which directly affect the industrial growth. It is a recognized fact that dynamic behavior of structures changes due to presence of crack. It has been observed that the presence of cracks in structures or in machine members leads to operational problem as well as premature failure.

Keywords

Citation

Toke, L.K. and Patil, M.M. (2023), "Vibration analysis and control of cracked beam using finite element method by using ANSYS", World Journal of Engineering, Vol. 20 No. 5, pp. 938-955. https://doi.org/10.1108/WJE-03-2021-0168

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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