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Finite element analysis showed good agreement between experimental and computed effective tensile and compressive moduli.
Finite element analysis showed that fibrous networks deformed in a non-continuum manner and allowed large deformation.
It is concluded that finite element analysis showed that the shear connector strength under fire exposure was very sensitive.
Finally, finite element analysis showed that AT mechanical stress increased with muscle load and converged at 4.6 7.9 cm of the enthesis.
Finite element analysis showed that the spalling behavior was promoted by the geometrical changes of the IMC structure and the induced cyclic shear stresses during temperature cycling loading.
The finite element analysis showed good agreement as compared with the experimental results in terms of load deflection and load CFRP strain curves.
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Element analysis shows that ions migrate into the nylon film.
The global finite element analysis shows high local stress concentrations at the connections of various details.
The dynamic responses obtained from a finite element analysis show two interesting phenomena.
Comparison with finite element analysis shows excellent agreement with favorable computational costs.
The finite element analysis shows how both modified and unmodified container models respond under given loading scenarios.
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