This
book covers nanocomposite materials possessing a broad range of
multifunctionality. It is intended to elucidate highly
original developments from recent research and developments of these
critical newly developed engineered materials, covering multiscale
modeling, molecular dynamics, finite element method, atomistic based
continuum, synthesis and characterization, condition
health monitoring, spectroscopic characterization techniques,
self-lubricating materials, and conducting polymers. It is a compilation
of the recent efforts of some of the most eminent researchers in the
world. Providing a range of perspectives from theory
and applications, Advances in Nanocomposites: Modeling,
Characterization Applications is ideal for engineers, physicists, and
materials scientists in academia, defence organisations and industry.
This book introduces nanocomposite materials possessing a broad range of multifunctionality. It elucidates novel and highly original developments from recent research and development of these critical, new engineered materials. The collection examines multiscale modeling, molecular dynamics, atomistic based continuum, synthesis and characterization, condition health monitoring, spectroscopic characterization techniques, self-lubricating materials, and conducting polymers. The volume features the latest efforts of some of the most eminent researchers in the world. Providing a range of perspectives from the laboratory and the field, Advances in Nanocomposites: Modeling and Characterization is ideal for engineers, physicists, and materials scientists in academia and industry.
Maximizes reader understanding of the value and potential applications of multifunctional nanocomposites across diverse domains, including electronic packaging, aerospace and automotive industries, and tribological applications Illustrates the ability of multifunctional nanocomposites to be tailored to achieve a range of unique and highly desirable properties Describes the transformation of an insulating polymer into an electrical/thermal/optical conductor with the dispersion of very small amounts of CNTs Discusses use of nanocomposite as sensors for online structural health monitoring Combines chapters on advanced modeling, reliable characterization, and applications of multifunctional nanocomposites written by leading experts in the field along with an up-to-date exploration of the state of the art in nanocomposite materials' research and development Includes supplementary material: sn.pub/extras
Shaker A. Meguid
Atomistic based Continuum Characterization of Nanomaterials Electrically Conducting Polymers Modeling and Simulation of Nanocomposites Nanocomposites Self-health Monitoring Tailoring of Polymers