A coupled model to analyse dynamic behaviour of non-prismatic rotating anisotropic thin-walled beams.

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Title: A coupled model to analyse dynamic behaviour of non-prismatic rotating anisotropic thin-walled beams.
Authors: Kumar, G. Deepak1 (AUTHOR), Panigrahi, B.1 (AUTHOR) brajeshpanigrahi248@gmail.com
Source: Mechanics of Advanced Materials & Structures. 2025, Vol. 32 Issue 14, p3434-3447. 14p.
Subjects: Thin-walled structures, Ritz method, Anisotropic crystals, Mechanical vibration research, Transients (Dynamics), Curved beams, Dynamic stiffness, Coriolis force
Abstract: The current research presents a dynamically coupled mathematical model considering the energy method and employing the classical Ritz-approximation method for a thin-walled anisotropic tapered rotating box beam. The novelty of this work lies in presenting the effect of circumferentially uniform stiffness (CUS) ply layup to investigate the reverberations of not considering bending-shear couplings toward vibration behavior. The current model is formulated by considering transverse shear and cross-sectional warping of order primary and secondary. The repercussions of not including non-classical effects like Coriolis-force, centrifugal-acceleration and warping, inertial-warping is explored. Mode switching arising for change in geometry and centrifugal stiffening is presented for various ply angles and rotational speeds. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:The current research presents a dynamically coupled mathematical model considering the energy method and employing the classical Ritz-approximation method for a thin-walled anisotropic tapered rotating box beam. The novelty of this work lies in presenting the effect of circumferentially uniform stiffness (CUS) ply layup to investigate the reverberations of not considering bending-shear couplings toward vibration behavior. The current model is formulated by considering transverse shear and cross-sectional warping of order primary and secondary. The repercussions of not including non-classical effects like Coriolis-force, centrifugal-acceleration and warping, inertial-warping is explored. Mode switching arising for change in geometry and centrifugal stiffening is presented for various ply angles and rotational speeds. [ABSTRACT FROM AUTHOR]
ISSN:15376494
DOI:10.1080/15376494.2024.2393736