Characterization Of Tribological Materials
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Beschrijving
Bol
Focuses on surface characterization, including roughness, hardness, coating thickness and bond strength. In this title, advancements in characterization methods are also covered for applications in magnetic recording media, rolling contact bearings and other high-tech systems. This classic text discusses the use of advanced surface science characterization techniques in friction, adhesive and abrasive wear, boundary lubrication, contact fatigue, and other important failure processes. Surface characterization of bearings, gears, seals, and other manufactured rolling and sliding surfaces are increasingly routine in advanced quality control of processes and in the manufacture of precision components. This book is an indispensable asset to scientists and engineers using tribological characterization techniques. New content in this edition include: • four new figures to illustrate real surface contact added to Chapter 1. • coverage of the use of the Environmental SEM (ESEM) in examining wear of fiber glass filled PTFE added to chapter 4. • new information on the wear of ceramics added to Chapter 5. • updates for new analytical systems added to Chapter 6. • coverage of Atomic Force Microscope (ATM) and its usefulness in the field of nano-tribology, providing not only full microtopography of surface roughness but also measurement of nano-friction and nanohardness of surface films, added in a new Chapter 9. • the 17 Appendices have been completely revamped with essential information organized into convenient tables.
Focuses on surface characterization, including roughness, hardness, coating thickness and bond strength. In this title, advancements in characterization methods are also covered for applications in magnetic recording media, rolling contact bearings and other high-tech systems. This classic text discusses the use of advanced surface science characterization techniques in friction, adhesive and abrasive wear, boundary lubrication, contact fatigue, and other important failure processes. Surface characterization of bearings, gears, seals, and other manufactured rolling and sliding surfaces are increasingly routine in advanced quality control of processes and in the manufacture of precision components. This book is an indispensable asset to scientists and engineers using tribological characterization techniques. New content in this edition include: • four new figures to illustrate real surface contact added to Chapter 1. • coverage of the use of the Environmental SEM (ESEM) in examining wear of fiber glass filled PTFE added to chapter 4. • new information on the wear of ceramics added to Chapter 5. • updates for new analytical systems added to Chapter 6. • coverage of Atomic Force Microscope (ATM) and its usefulness in the field of nano-tribology, providing not only full microtopography of surface roughness but also measurement of nano-friction and nanohardness of surface films, added in a new Chapter 9. • the 17 Appendices have been completely revamped with essential information organized into convenient tables.
Bol PartnerUnderstanding the composition and structure of a surface is essential in understanding its frictional (Tribological) properties. This volume in the "Materials Characterization" series focuses on surface characterization, including roughness, hardness, coating thickness and bond strength. Understanding the composition and structure of a surface is essential in understanding its frictional (Tribological) properties. This volume in the Materials Characterization series will focus on surface characterization, including roughness, hardness, coating thickness and bond strength. Advanced characterization methods are also covered for applications in magnetic recording media, rolling contact bearings and other high-tech systems. -- Reviews major physical principles of tribology, including adhesion, friction, abrasion and surface boundary conditions -- Special section on surface characterization of magnetic recording surfaces -- Concise summaries of major characterization technologies for tribological materials, including SEM, Energy-Dispersive X-Ray Spectroscopy, Fourier Transform Infrared Spectroscopy and Static Secondary Ion Mass Spectroscopy
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