Review of Revolutionizing Flight with Graphene-Induced Matrix, Polymer Nanocomposite for Aerospace Applications
摘要
The aviation industry is constantly striving to enhance performance, efficiency, and sustainability. Graphene, a remarkable 2-dimensional material, has emerged to help in the development of advanced materials. This abstract provides an overview of the utilization of Graphene-Induced polymer Matrix Nano-Composites in aviation. Graphene is a material composed of single layers of carbon atoms in the form of hexagonal lattice, which offers combination of extraordinary mechanical, electrical, and thermal properties. This material provides an exceptional strength-to-weight ratio, it is significantly lighter and more durable than aluminum which is currently used in making many parts of an aircraft are made of aluminum, including the fuselage, wings, tail, and engine components. Graphene is synthesized through diverse methods, such as Mechanical Exfoliation (commonly known as the Scotch Tape Method), Chemical Vapor Deposition (CVD), Liquid Phase Exfoliation, and Epitaxial Growth. This research aims to explore the ways in which graphene and nanotechnology contribute to reaching new heights in aviation and advancing existing technology.