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Tribology of Additively Manufactured Materials: Fundamentals,
Modeling, and Applications starts with a look at the history,
methods and mechanics of additive manufacturing (AM), focusing on
power bed fusion-based and direct energy deposition-based additive
manufacturing. Following sections of the book provide a
foundational background in the fundamentals of tribology, covering
the basics of surface engineering, friction and wear, corrosion and
tribocorrosion, and the tribological considerations of a variety of
AM materials, such as friction and wear in non-metallic and
metallic AM materials, degradation in non-metallic AM components,
and corrosion and tribocorrosion in AM components. The book then
concludes with a section covering modeling and simulation scenarios
and challenges related to the tribology of AM materials, providing
readers with the processing conditions needed to extend and
strengthen the lifetime and durability of AM materials and
components.
Tribocorrosion: Fundamentals, Methods, and Materials provides a
balanced coverage of recent advancements in both experimental and
computational areas of tribocorrosion, covering the basic concepts
of tribology and electrochemistry, as well as testing set-ups,
protocols, electrochemical methods, and more. It outlines
experimental methods, demonstrating the different effects of
material loss due to mechanical and electrochemical actions and
looks at their effects in applied automotive, aerospace and
biomedical settings. Standard testing protocols, tribocorrosion
mechanisms in sliding contacts, and modeling and simulation
techniques are all covered at length, as is bio-tribocorrosion and
the best ways to prevent it.
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