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The effect of adhesive compliance on the deflection of a loaded, bonded beam was studied using laser profilometry.
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The vibration and dynamic stability of a traveling sandwich beam are studied using the finite element method.
In this paper, the free vibration of a non-uniform free free Euler Bernoulli beam is studied using an inverse problem approach.
The effects of partial constrained viscoelastic layer damping on the first milliseconds of the transient vibration of an impacted beam is studied using an analytical model.
Modal behavior of a three-dimensional (3D) homogeneous and functionally graded (FG) cantilever beam is studied using the Rayleigh Ritz (RR) method and the finite element method (FEM).
Next, harmonically forced, lightly damped responses of the beam are studied using both a slow frequency sweep and a shooting-method based search for periodic solutions along with numerical continuation.
The mechanics of plastic aluminum composite I-beams are studied using physical experiments and numerical predictions.
The thermoelastic, geometrically nonlinear vibrations of isotropic, straight and curved beams are studied using p-version, hierarchical finite elements.
Static bending of web-core beams is studied using the micropolar model as well as modified couple-stress and classical Timoshenko beam models.
The static response of homogeneous and composite beams is studied using approximations of the pointwise displacement components of linear three-dimensional elasticity theory.
In the current research, twelve box steel beams were studied using FE analysis program, ANSYS to investigate their structural performance up to failure in terms of the maximum load and its corresponding deflection, the shear and normal stresses and the strain.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com