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Free vibrations of a laminated composite curved beam with arbitrary layups

Ramazan‐Ali Jafari‐TalookolaeiSchool of Mechanical Engineering Babol Noshirvani University of Technology Babol IranHamidreza GhandvarDepartment of Mechanical Engineering Faculty of Engineering New Uzbekistan University Tashkent UzbekistanElyorjon JumaevExecutive Office University of Business and Science Tashkent UzbekistanOrifjon MikhlievDepartment of Mechanical Engineering FIE UzLITI Engineering LLC Tashkent Uzbekistan
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Abstract In this article, a new mathematical modeling is introduced for analyzing the free vibrations of a laminated composite curved beam (LCCB) with arbitrary layups. To achieve this, in‐plane and out‐of‐plane deformations, shear deformations, rotary inertia, warping effect, Poisson's effect, and coupling of tension‐bending‐torsion are considered. Using the analytical and finite element methods, the system's discrete equations are derived in matrix form. By solving these equations, the free vibration characteristics of the beam are calculated. The computed results are compared with those of specific cases presented by other researchers, as well as with results obtained from a three‐dimensional ANSYS software, showing very good agreement. Furthermore, the effects of various parameters on the vibrational behavior of the curved beam are investigated in detail.

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