Litcius/Paper detail

Hygro-Thermal Vibrations of Porous FG Nano-Beams Based on Local/Nonlocal Stress Gradient Theory of Elasticity

Rosa Penna, Luciano Feo, Giuseppe Lovisi, Francesco Fabbrocino

2021Nanomaterials26 citationsDOIOpen Access PDF

Abstract

In this manuscript the dynamic response of porous functionally-graded (FG) Bernoulli-Euler nano-beams subjected to hygro-thermal environments is investigated by the local/nonlocal stress gradient theory of elasticity. In particular, the influence of several parameters on both the thermo-elastic material properties and the structural response of the FG nano-beams, such as material gradient index, porosity volume fraction, nonlocal parameter, gradient length parameter, and mixture parameter is examined. It is shown how the proposed approach is able to capture the dynamic behavior of porous functionally graded Bernoulli-Euler nano-beams under hygro-thermal loads and leads to well-posed structural problems of nano-mechanics.

Topics & Concepts

Materials sciencePorosityElasticity (physics)VibrationNano-ThermalTemperature gradientVolume fractionComposite materialBernoulli's principleMechanicsPorous mediumEuler's formulaMathematical analysisPhysicsMathematicsThermodynamicsQuantum mechanicsNonlocal and gradient elasticity in micro/nano structuresComposite Structure Analysis and OptimizationThermoelastic and Magnetoelastic Phenomena