Reprint

Advances in Mechanical Problems of Functionally Graded Materials and Structures

Edited by
October 2019
262 pages
  • ISBN978-3-03921-658-1 (Paperback)
  • ISBN978-3-03921-659-8 (PDF)

This book is a reprint of the Special Issue Advances in Mechanical Problems of Functionally Graded Materials and Structures that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

The book deals with novel aspects and perspectives in functionally graded materials (FGMs), which are advanced engineering materials designed for a specific performance or function with spatial gradation in structure and/or composition. The contributions mainly focus on numerical simulations of mechanical properties and the behavior of FGMs and FGM structures. Several advancements in numerical simulations that are particularly useful for investigations on FGMs have been proposed and demonstrated in this Special Issue. Such proposed approaches provide incisive methods to explore and predict the mechanical and structural characteristics of FGMs subjected to thermoelectromechanical loadings under various boundary and environmental conditions. The contributions have resulted in enhanced activity regarding the prediction of FGM properties and global structural responses, which are of great importance when considering the potential applications of FGM structures. Furthermore, the presented scientific scope is, in some way, an answer to the continuous demand for FGM structures, and opens new perspectives for their practical use.

Format
  • Paperback
License
© 2019 by the authors; CC BY-NC-ND license
Keywords
functionally graded beams; different moduli in tension and compression; bimodulus; analytical solution; neutral layer; quadratic solid–shell elements; finite elements; functionally graded materials; thin structures; geometrically nonlinear analysis; functionally graded piezoelectric materials; circular plate; combined mechanical loads; electroelastic solution; ANFIS; fuzzy logic; clustering; neural networks; robotics and contact wear; evanescent wave; polynomial approach; functionally graded piezoelectric-piezomagnetic material; dispersion; attenuation; functional graded saturated material; inhomogeneity; Love wave; dispersion; attenuation; porous materials; truncated conical sandwich shell; metal foam core layer; non-linear buckling analysis; orthogonal stiffener; elastic foundation; functionally graded plate; power-law distribution; high order shear deformation theory; elastic foundation; stepped FG paraboloidal shell; general edge conditions; spring stiffness technique; free vibration characteristics; Lamb wave; functionally graded viscoelastic material; minimum module approximation method; damping coefficient; functionally graded materials; finite element analysis; graded finite elements; functionally graded materials; inhomogeneous composite materials; material design; stress concentration factor; failure and damage; elliptical hole; finite element method; hollow disc; external pressure; residual stress; residual strain; flow theory of plasticity; functionally graded materials; elastoplastic analysis; pure bending; residual stress; large strain