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cover Automotive tribology / Jite...
Automotive tribology
Springer 2019

This book presents a comprehensive study of all important aspects of tribology. It covers issues and their remedies adopted by researchers working on automobile systems. The book is broadly divided in to three sections, viz. (i) new materials for automotive applications, (ii) new lubricants for automotive applications, and (iii) impact of surface morphologies for automotive applications. The rationale for this division is to provide a comprehensive and categorical review of the developments in automotive tribology. The book covers tribological aspects of engines, and also discusses influence of new materials, such as natural fibers, metal foam materials, natural fiber reinforced polymer composites, carbon fiber/silicon nitride polymer composites and aluminium matrix composites. The book also looks at grease lubrication, effectiveness and sustainability of solid/liquid additives in lubrication, and usage of biolubricants. In the last section the book focuses on brake pad materials, shot peening method, surface texturing, magnetic rheological fluid for smart automobile brake and clutch systems, and application of tribology in automobile systems. This book will be of interest to students, researchers, and professionals from the automotive industry

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Título:
Automotive tribology / Jitendra Kumar Katiyar, Shantanu Bhattacharya, Vinary Kumar Patel, Vikram Kumar, editors
Editorial:
Singapore : Springer, 2019
Descripción física:
1 online resource (342 pages)
Mención de serie:
Energy, Environment, and Sustainability Ser
Nota general:
6.1 Introduction
Contenido:
Intro; Preface; Contents; About the Editors; General; 1 Introduction of Automotive Tribology; 1.1 Introduction; 1.1.1 Friction; 1.1.2 Wear; 1.1.3 Lubrication; 1.1.4 Factors Which Affect the Tribological Performance; 1.1.5 Application of Tribology; References; New Materials for Automotive Applications; 2 Tribological Aspects of Automotive Engines; 2.1 Introduction; 2.2 Automotive Engine Tribology; 2.2.1 Engine; 2.2.2 Engine Lubrication Regimes and Wear Calculations; 2.2.3 Piston Ring Assembly; 2.2.4 Engine Bearing; 2.2.5 Valve-Train; 2.2.6 Cam Follower
2.3 Transmission and Drive Line Tribology2.3.1 Transmission Line; 2.3.2 Traction Drive Components; 2.3.3 Wheel Bearing; 2.3.4 Drive Chain; 2.4 Trends in Automotive Engine Tribology; 2.4.1 New Material Development; 2.4.2 Development of Nano-tribology; 2.5 Trends in Automotive Lubricants; 2.5.1 Engine Lubricants; 2.5.2 Gear Lubricants; 2.5.3 Axle Lubricants; 2.5.4 Solid Lubricants; 2.6 Summary; References; 3 The Potential of Natural Fibers for Automotive Sector; 3.1 Introduction; 3.2 Applications of Natural Fibre-Reinforced Polymer Composites (NFRC)
3.3 Advantages of Natural Fibre-Reinforced Polymer Composites3.4 Disadvantages of Natural Fibre-Reinforced Polymer Composites; 3.5 Classification of Natural Fibres; 3.6 Mechanical Testing of Natural-Fibre Composites; 3.6.1 Tensile Strength of Composite; 3.6.2 Elongation at Break (%); 3.6.3 Impact Strength; 3.6.4 Flexural Strength; 3.6.5 Stiffness; 3.6.6 Dynamic Mechanical Analysis; 3.7 Applications in the Automobile Sector; 3.7.1 Interior Components; 3.7.2 Exterior Components; 3.8 Limitations; 3.9 Conclusions; References; 4 Future of Metal Foam Materials in Automotive Industry
4.1 Introduction4.2 Production Methods of Close Cell Metal Foams; 4.2.1 Blowing Agent Techniques; 4.2.2 Powder Metallurgy Technique (Trade Name-Alulight); 4.2.3 Melt Route Method (Trade Name-Alporas); 4.2.4 Foaming by Gas Injection (Trade Name-Alcan or Cymat); 4.3 Properties of Some of the Commercially Available Al Foams; 4.4 Applications and Commercialization of Close-Cell Metal Foam; 4.4.1 Light Weight Construction and Energy Absorption Applications; 4.4.2 Light Weight Construction with Damping Insulation; 4.4.3 Multi-functional Application; 4.5 Conclusion; References
5 Study of Tribo-Performance and Application of Polymer Composite5.1 Introduction; 5.2 Tribology; 5.2.1 Tribo-Testing Machines; 5.3 Tribological Properties of Polymer; 5.4 Tribological Properties of Fibre Reinforced Polymer Composite Materials; 5.4.1 Glass Fibre Composite; 5.4.2 Carbon Fibre Composite; 5.4.3 Natural Fibre Composite; 5.5 Tribological Application of Composite Materials; 5.5.1 Gears; 5.5.2 Brake Pads; 5.5.3 Springs; 5.6 Conclusions; 5.7 Future Works; References; 6 Mechanical and Erosion Characteristics of Natural Fiber Reinforced Polymer Composite: Effect of Filler Size
Copyright/Depósito Legal:
1129292305 1162810830
ISBN:
9789811504341 ( electronic bk.)
9811504342 ( electronic bk.)
9789811504334
9811504334
9789811504334
9789811504358 ( print)
9811504350
9789811504365 ( print)
9811504369
Materia:
Autores:
Congresos:
International Conference on "Sustainable Energy and Environmental Challenges" ( 2018 :. Roorkee, India)
Enlace a formato físico adicional:
Print version: Katiyar, Jitendra Kumar. Automotive Tribology., Singapore : Springer, 2019 9789811504334
Punto acceso adicional serie-Título:
Energy, environment, and sustainability

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