Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"FE Modeling and Analysis of Isotropic and Orthotropic Beams Using First Order Shear Deformation Theory"
written by M. Adnan Elshafei,
published by Materials Sciences and Applications, Vol.4 No.1, 2013
has been cited by the following article(s):
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[11] Static Analysis of Orthotropic Euler-Bernoulli and Timoshenko Beams With Respect to Various Parameters
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[12] Nonlinear analysis of viscoelastic micro-composite beam with geometrical imperfection using FEM: MSGT electro-magneto-elastic bending, buckling and vibration solutions
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[13] Determination of buckling loads for wooden beams using the elastic models
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[14] Spectral element analysis of free-vibration of Timoshenko beam
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[15] The Effect of Various Fiber Orientations and Boundary Conditions on Natural Frequencies of Laminated Composite Beam
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[16] The effect of various fibre orientation and boundary condition on natural frequency of laminated composite beam
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[17] Ortotrop Kirişlerin Farklı Kiriş Teorileri Ile Statik Analizi
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[18] Effect of Fiber Angles on Dynamic Response of Cantilever Composite Beams
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[19] Vibrational response of coupled orthotropic protein microtubules immersed in cytosol considering small-scale and surface effects
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[20] ANALYTICAL SOLUTION OF DYNAMIC FLEXURAL RESPONCE OF SYMMETRIC COMPOSITE TIMOSHENKO BEAMS UNDER HARMONIC FORCES
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[21] Static analysis of isotropic, orthotropic and functionally graded material beams
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[22] Bending of laminated beams using Timoshenkomodel via nonlocal elasticity
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[23] Super-Convergent Finite Element for Dynamic Analysis of Symmetric Composite Shear-deformable Beams under Harmonic Forces
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[24] FLEXURAL ANALYSIS OF SYMMETRIC LAMINATED COMPOSITE TIMOSHENKO BEAMS UNDER HARMONIC FORCES – II. FINITE ELEMENT FORMULATION
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[26] Flexural Analysis of Symmetric Laminated Composite Timoshenko Beams under Harmonic Forces–II. Finite Element Formulation
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[27] Flexural Analysis of Symmetric Laminated Composite Timoshenko Beams under Harmonic Forces: An Analytical Solution
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[28] MODELING STRESS OF SMART BEAM WITH THERMO-PIEZOELECTRIC EFFECTS
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[29] FLEXURAL ANALYSIS OF SYMMETRIC LAMINATED COMPOSITE TIMOSHENKO BEAMS UNDER HARMONIC FORCES–II. FINITE ELEMENT …
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