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Both the primary and combination instability regions for various natural modes and boundary conditions are obtained numerically.
The effects of the material gradient index, beam thickness, vibration modes and boundary conditions on the TED of the FGM micro beams are studied in detail.
Frequency values have been given for different material and geometric parameters, modes and boundary cases for circular cylindrical panels with FGM and CNTR cases.
The resonance and antiresonance frequencies and the vibrating modes are calculated for the various resonance modes and boundary conditions, and the results are compared with those by the three-dimensional finite element methods.
Then, using the DQ and DSC methods, the frequencies values have been calculated for different material and geometric parameters, modes and boundary cases for truncated conical panels with FGM.
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And boundary 1 corresponds to the inherent global electromechanical mode and boundary 2 is linked to introduction global electromechanical mode.
This paper presents five parametric studies, namely, the thickness/length ratio, the constraining layer thickness, material properties, natural mode and boundary conditions.
In this work, a parametric study is performed exploring the effect that the design parameters, namely the thickness/length ratio, constraining layer thickness, material modulus, natural mode and boundary conditions have on these two counterparts and subsequently, on the treatment efficiency.
The converter analysis is given in three modes of operation named as continuous conduction mode (CCM), discontinuous conduction mode (DCM) and boundary conduction mode (BCM).
A relation between sliding mode gain and boundary layer is established for the existence of second order discrete sliding motion.
These are carried out by investigating various effects based on different stacking sequences, stiffness and span-to-thickness ratios, mode shapes and boundary conditions.
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