Tribology and Sustainability

Tribology and Sustainability

Katiyar, Jitendra Kumar; Jayalakshmi, S.; Singh, R. Arvind; Raina, Ankush; Ul Haq, Mir Irfan

Taylor & Francis Ltd

08/2021

417

Dura

Inglês

9780367551469

15 a 20 dias

453

Descrição não disponível.
Section I: Materials Tribology 1. Materials for Tribological Applications: An Overview 2. Tribology of Lightweight Materials 3. Self-Lubricating Iron-Based Metal Matrix Composites 4. Metal Matrix Nanocomposites: Physical, Mechanical and Tribological Properties 5. Tribological Properties of Green Hybrid Metal Matrix Composites Reinforced with Synthetic and Industrial-Agricultural Wastes 6. Mechanical and Tribological Properties of Natural Fiber Reinforced Polymer Composites 7. Solid Lubricant Coatings: Effective Lubricating Coatings for Tribological Applications 8. Frictional Behaviour of Gelatin Based Soft Lubricants Section II: Sustainable Lubrication 9. Recent Progress in Vegetable Oil-Based Lubricants for Tribological Applications 10. Biolubricants 11. Group IV Base Stock: Polyalphaolefin - A High-Performance Base Oil for Tribological Applications 12. Role of Surfactants and Their Concentrations on the Tribological Characteristics of MWCNT-in-Oil Lubricants for Hybrid AMMC-Steel Sliding Contact 13. A Nexus of Tribology and Rheology to Study Thin-Film Mechanics of Asphalt-Aggregate Interaction during Mixing and Compaction 14. Effect of Fatty Acid Composition on the Lubricating Properties of Bio-Based Green Lubricants 15. Multi-Lobe Journal Bearings Analysis with Limited Texture 16. Minimum Quantity Lubrication for Sustainable Manufacturing Section III: Biotribology 17. Biomedical Tribology 18. Tribological Studies on Titanium Alloys for Biomedical Applications 19. Tribological Aspects of Artificial Joints 20. Biomedical Tribology: Wear of Polyethylene in Total Joint Replacement 21. Tribological Review of Medical Implants Manufactured by Additive Manufacturing 22. Aqueous Lubrication
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Tribological Properties;Composites;Solid Lubricants;Lubricants;Wear Rates;Coatings;Tribological Performance;Thin Films;Lubricating Regimes;Carbon Materials;Wear Resistance;Biomimetics;Tribological Behaviour;Minimal Quantity Lubrication;Wear Debris;MML;Friction Stir Processing;Tribological Test;Tribological Characteristics;Laser Textured Surface;ESBO;Conventional Ultra-high Molecular Weight Polyethylene;Average COF;Stir Casting;Asphalt Binders;Liquid Lubricants;Wear Tracks;Base Oil;Wear Loss;MMCs;THA