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Dynamic Analysis of a Fiber-Reinforced Composite Beam under a Moving Load by the Ritz Method
by
Akbaş, Şeref
, Civalek, Ömer
, Ersoy, Hakan
, Akgöz, Bekir
in
Acceleration
/ Beam theory (structures)
/ Carbon
/ Civil engineering
/ Composite beams
/ Composite materials
/ Concrete
/ Constitutive equations
/ Constitutive relationships
/ Fiber composites
/ Fiber orientation
/ fiber-reinforced composite materials
/ Functions (mathematics)
/ Kinematics
/ Load
/ Mathematical analysis
/ moving load problems
/ Moving loads
/ Nanocomposites
/ Polynomials
/ Ratios
/ Ritz method
/ Timoshenko beams
2021
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Dynamic Analysis of a Fiber-Reinforced Composite Beam under a Moving Load by the Ritz Method
by
Akbaş, Şeref
, Civalek, Ömer
, Ersoy, Hakan
, Akgöz, Bekir
in
Acceleration
/ Beam theory (structures)
/ Carbon
/ Civil engineering
/ Composite beams
/ Composite materials
/ Concrete
/ Constitutive equations
/ Constitutive relationships
/ Fiber composites
/ Fiber orientation
/ fiber-reinforced composite materials
/ Functions (mathematics)
/ Kinematics
/ Load
/ Mathematical analysis
/ moving load problems
/ Moving loads
/ Nanocomposites
/ Polynomials
/ Ratios
/ Ritz method
/ Timoshenko beams
2021
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Dynamic Analysis of a Fiber-Reinforced Composite Beam under a Moving Load by the Ritz Method
by
Akbaş, Şeref
, Civalek, Ömer
, Ersoy, Hakan
, Akgöz, Bekir
in
Acceleration
/ Beam theory (structures)
/ Carbon
/ Civil engineering
/ Composite beams
/ Composite materials
/ Concrete
/ Constitutive equations
/ Constitutive relationships
/ Fiber composites
/ Fiber orientation
/ fiber-reinforced composite materials
/ Functions (mathematics)
/ Kinematics
/ Load
/ Mathematical analysis
/ moving load problems
/ Moving loads
/ Nanocomposites
/ Polynomials
/ Ratios
/ Ritz method
/ Timoshenko beams
2021
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Dynamic Analysis of a Fiber-Reinforced Composite Beam under a Moving Load by the Ritz Method
Journal Article
Dynamic Analysis of a Fiber-Reinforced Composite Beam under a Moving Load by the Ritz Method
2021
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Overview
This paper presents the dynamic responses of a fiber-reinforced composite beam under a moving load. The Timoshenko beam theory was employed to analyze the kinematics of the composite beam. The constitutive equations for motion were obtained by utilizing the Lagrange procedure. The Ritz method with polynomial functions was employed to solve the resulting equations in conjunction with the Newmark average acceleration method (NAAM). The influence of fiber orientation angle, volume fraction, and velocity of the moving load on the dynamic responses of the fiber-reinforced nonhomogeneous beam is presented and discussed.
Publisher
MDPI AG
Subject
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