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"Tribology in Materials and Manufacturing: Wear, Friction and Lubrication" ed. by Amar Patnaik, Tej Singh, Vikas Kukshal

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"Tribology in Materials and Manufacturing: Wear, Friction and Lubrication" ed. by Amar Patnaik, Tej Singh, Vikas Kukshal

"Tribology in Materials and Manufacturing: Wear, Friction and Lubrication" ed. by Amar Patnaik, Tej Singh, Vikas Kukshal
ITexLi | 2021 | ISBN: 1838805753 9781838805753 1838805575 9781838805579 1838818995 9781838818999 | 324 pages | PDF | 45 MB

This volume brings an interdisciplinary perspective to accomplish a more detailed understanding of tribological assessments, friction, lubrication, and wear in advanced manufacturing.

Chapters cover such topics as ionic liquids, non-textured and textured surfaces, green tribology, lubricants, tribolayers, and simulation of wear.

Contents
1. Tribological Properties of Ionic Liquids
2. Turbulent Flow Fluid in the Hydrodynamic Plain Bearing to a Non-Textured and Textured Surface
3. Green Tribology
4. Tribological Behavior of Polymers and Polymer Composites
5. Tribological Study of the Friction between the Same Two Materials (RAD Steel)
6. Tribology of Ti-6Al-4V Alloy Manufactured by Additive Manufacturing
7. A New Concept of the Mechanism of Variation of Tribological Properties of the Machine Elements Interacting Surfaces
8. The Effect of Elemental Composition and Nanostructure of Multilayer Composite Coatings on Their Tribological Properties at Elevated Temperatures
9. Lubricant and Lubricant Additives
10. Friction, Lubrication, and Wear
11. Biolubricant from Pongamia Oil
12. Nonlinear Frictional Dynamics on Rolling Contact
13. Wear Protective Effects of Tribolayer Formation for Copper Based Alloys in Sliding Contacts: Alloy Dependent Sliding Surfaces and Their Effects on Wear and Friction
14. Characteristic Aspects of Metal Wear: Wear-Induced Wear Transition and Characteristics of Wear Track Profiles
15. Wear: A Serious Problem in Industry
16. Atomistic Simulation of Severely Adhesive Wear on a Rough Aluminum Substrate
17. Fretting Wear Performance of PVD Thin Films

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