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Article ; Online: Inclined Curved Crack Composite Beam: Experimental and Computational Analysis with Recycled Aluminum Composite Materials and Comparison with an Artificial Neural Network.

Ravichandran, Ashok / Mohanty, Prases K / Asiri, Abdullah Naser M / Islam, Saiful

ACS omega

2024  Volume 9, Issue 4, Page(s) 4395–4411

Abstract: This research focuses on an inclined curved crack model for a recycled aluminum composite beam at various crack depths and locations. The inclined curved crack equation of the motion, by governing a free vibration curved beam with a different depth of ... ...

Abstract This research focuses on an inclined curved crack model for a recycled aluminum composite beam at various crack depths and locations. The inclined curved crack equation of the motion, by governing a free vibration curved beam with a different depth of crack, is solved computationally via the differential quadrature method (DQM) and experimentally; additionally, the result of the natural frequency has been compared with various depths of curvature. For the first four modes of cracked beams, the computational method's output is used to determine the natural frequencies associated with mode shapes. The outcomes of the computational results suggested a structural health monitoring system to detect deterioration in composite structures when modal parameters have changed. An experimental set of results was validated using MATLAB2019a, and the outcomes were compared with an artificial neural network.
Language English
Publishing date 2024-01-20
Publishing country United States
Document type Journal Article
ISSN 2470-1343
ISSN (online) 2470-1343
DOI 10.1021/acsomega.3c04535
Database MEDical Literature Analysis and Retrieval System OnLINE

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