2023
DOI: 10.1016/j.compstruct.2023.117514
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Variable-stiffness curved laminated-beams by curvilinear fibers with arbitrarily layup – Vibrational features by sine-based higher-order beam model with renewed-constitutive relations and improved-kinematics

Ganapathi Manickam,
Olivier Polit,
Lingesh Balaji
et al.
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Cited by 7 publications
(2 citation statements)
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“…Nonetheless, Mehrparvar et al [183] implemented the high order (HO) Haar wavelet methodology to examine the FV analysis of the Timoshenko beam. Moreover, in a novel study for predicting the Frequency ratio (FR) performance of constant and variable stiffness general layup composite arched beams, Manickam et al [184] employed the HSDT of beams. Besides, the mixed-developed ZZT has been used by Sorrenti and Gherlone [185] to analyze the dynamical response of a sandwich beam with adhesive layers.…”
Section: Beam Structurementioning
confidence: 99%
“…Nonetheless, Mehrparvar et al [183] implemented the high order (HO) Haar wavelet methodology to examine the FV analysis of the Timoshenko beam. Moreover, in a novel study for predicting the Frequency ratio (FR) performance of constant and variable stiffness general layup composite arched beams, Manickam et al [184] employed the HSDT of beams. Besides, the mixed-developed ZZT has been used by Sorrenti and Gherlone [185] to analyze the dynamical response of a sandwich beam with adhesive layers.…”
Section: Beam Structurementioning
confidence: 99%
“…Beam structures are commonly used in many technological and industrial sectors, particularly in the construction industry [1]. Variable stiffness beams are frequently used to save beam materials or to make beams lighter [2] [3], particularly when they are used in aeronautical or automobile manufacturing as well as in Civil engineering [4]. In civil engineering, they are used as foundation beams, columns of certain buildings, electrical transport pillars and chimneys.…”
Section: Introductionmentioning
confidence: 99%