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Exact(2)
The geometry of the beam was modeled using shell elements.
Full beam was modeled using 56 nodes in the x direction (i.e., longitudinal direction) placed with a spacing of 39.6 mm between successive nodes in the loading places, 18 mm at the support point and 75 mm at the center.
Similar(58)
The beam is modeled using the Timoshenko beam theory.
The beam is modeled using the Euler-Bernoulli beam theory.
The curved beam is modeled using finite element model.
Outside the plastic hinge region, the beam is modeled using an elastic beam element.
The investigated carbon composite beam is modeled using a shell 2D-model on Abaqus commercial finite element code.
Wave propagation problem for a porous laminated composite beam is modeled using spectral finite element method (SFEM), based on the modified rule of mixture approach, which is used to include the effect of porosity on the stiffness and density of the composite beam structure.
In the present study, the beam is modeled using discrete reinforcement.
Open image in new window Fig. 4 Strain comparison of experimental and FAM results: a Beam1, b Beam 2. The fatigue behavior of beams was modeled using the FAM, and the results produced were verified using He's experimental data.
The continuous beam is modelled using Bernoulli Euler beam theory.
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