Nanomechanics for Coatings and Engineering Surfaces

Nanomechanics for Coatings and Engineering Surfaces
Author :
Publisher : Elsevier
Total Pages : 738
Release :
ISBN-10 : 9780443133350
ISBN-13 : 0443133352
Rating : 4/5 (50 Downloads)

Book Synopsis Nanomechanics for Coatings and Engineering Surfaces by : Ben Beake

Download or read book Nanomechanics for Coatings and Engineering Surfaces written by Ben Beake and published by Elsevier. This book was released on 2024-11-05 with total page 738 pages. Available in PDF, EPUB and Kindle. Book excerpt: Nanomechanics for Coatings and Engineering Surfaces: Test Methods, Development Strategies, Modeling Approaches, and Applications provides readers with an array of best practices for nanoindentation measurements as well as related small-scale test methods and how to translate test results into the development of improved coatings. A core theme of the book is explaining to readers exactly how, when, and why the nanomechanical properties of engineered surfaces relate to their wear resistance. The book starts with chapters that introduce the development and importance of nanomechanical testing and linkages between wear resistance and the mechanical properties of coatings before moving into discussions of various experimental methods and techniques, such as nanoindentation, continuous stiffness measurements, nano-scratch methods, high-temperature testing, nano-impact testing, and more. Other sections discuss modeling approaches such as finite element analysis, atomistic and molecular dynamics, and analytical methods. Design strategies and industrial applications are covered next, with a final section looking at trends and future directions. - Provides best practices in nanoindentation measurements and related small-scale test methods - Demonstrates how to use test results to develop improved coatings - Outlines modeling approaches and numerical simulations - Highlights selected applications for metallic nanocomposites, tribological coatings, solid lubricants, and aerospace coatings - Shows future directions for simulation of complex wear scenarios


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