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The equations model the general behavior of finite plates well and explain the dependence of plate energetics on frequency and damping.
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Pure thickness modes and propagating waves in unbounded plates as well as vibrations of finite plates are studied.
Zhang and Murphy (2012) have studied a general formulation developed for the contact behavior of a finite circular plate with a tensionless elastic foundation.
In this study, numerical analysis using the finite element was carried out for the behavior of steel plates and graphite/epoxy composite laminated plates by low-velocity impact.
The optimization methodology is based on a genetic algorithm, which is coupled with a finite element method for analyzing the wave propagation behavior of the plates.
This methodology is coupled with the Finite Element (FE) method to analyze the wave propagation behavior of the plates under elastic response.
This chapter investigates the local and post-local buckling behavior of steel plates in double skin composite panels under biaxial compression by using the finite element method.
This paper studies the critical local and post-local buckling behavior of steel plates in concrete-filled thin-walled steel tubular beam columns by using the finite element analysis method.
In this paper, a new finite element modeling technique is developed to simulate punching and post-punching behavior of flat plates, which is verified against an available punching experiment.
Finite element analysis is also performed to predict the effects of cutout on the buckling behavior of these plates.
This paper presents a parametric study to investigate the mechanical behavior of bolted connection plates based on finite element analysis (FEA).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com