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It is seen that the power index (g) and thickness of piezo-layer have significant effect on the deflection amplitude and natural frequency of piezo-FG plate.
It is shown that the thickness of the piezo-layer has significant effect on the deflection amplitude and natural frequency of the piezo-FG plate.
It can be observed that the power index (g) has significant effect on the deflection amplitude and natural frequency of the piezo-FG plate.
The effect on the deflection corresponding to the cracking and yield loads was not significant; however, the ultimate deflections were affected by prestressing.
By employing the Bubnov Galerkin method, the nonlinear partial differential equation is transformed to a third-order nonlinear algebraic equation for the maximum deflection where a coupling factor is introduced for determining the coupling effect on the deflection.
Similar(55)
Critical effects on the deflection magnitude were identified and discussed.
It is further verified that openings near the supports have insignificant effects on the deflection at the mid-span and this effect can be thus ignored.
This article presents the investigation of shear effects on the deflection of the pultruded beam with an open cross-section and two cells consisted of thin-walled plates.
This article analytically and experimentally investigated the shear effects on the deflection of a carbon fibre reinforced polymer (CFRP) based building floor panel.
Our numerical results indicate that the temperature rising, applied voltage and nonlocal parameter have significant effects on the deflection and electric potential.
The formulations to calculate the shear effects on the deflection of the CFPR floor panel in two different loading cases were conducted analytically, and were validated by experimental work of scaled floor panels.
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