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To investigate the behavior of the functionally graded structures at issue, a four parameter power law function is considered.
This paper aims to investigate the in-plane dynamic mechanical behavior of the functionally graded honeycomb.
Numerical examples are provided to show the effects of material properties upon the dynamic fracture behavior of the functionally graded materials.
Based on the modified couple-stress theory, the size-dependent behavior of the functionally graded anisotropic elastic composites is analytically investigated when the load is applied on the top surface of the composite plate.
The results are depicted to show the effects of different parameters on the nonlinear buckling behavior of the functionally graded (FG) porous micro-/nano-beams for clamped boundary condition.
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Thermal postbuckling and vibration behaviors of the functionally graded (FG) plate are investigated.
This paper focuses on the dynamic stability behaviors of the functionally graded (FG) orthotropic circular cylindrical shell surrounded by the two-parameter (Winkler-Pasternak) elastic foundation subjected to a linearly increasing load with the consideration of damping effect.
Numerical results show that GPL distribution pattern, weight fraction, and geometry and size have significant influences on the bending and buckling behaviors of the functionally graded GPL reinforced nanocomposite plate.
In this study, low velocity impact behavior of the glass/carbon functionally graded filament wound composite pipes with ±55° winding angle was experimentally investigated.
The influences of the shell geometry and piezoelectric thickness, temperature change, external constant electric voltage and aerodynamic loads on the nonlinear dynamic behavior of the piezoelectric functionally graded shells through a comprehensive parametric study are discussed in details.
As a first endeavor, the free vibration behavior of the pre-twisted functionally graded carbon nanotube reinforced composite (FG-CNTRC) beams in thermal environment is studied.
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