Fundamentals and Advances in Metal Matrix Composites
Herausgeber: Gopal, Pm; Ramakrishnan, Tharmaraj
Fundamentals and Advances in Metal Matrix Composites
Herausgeber: Gopal, Pm; Ramakrishnan, Tharmaraj
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The scope of this book covers the fundamental background of Metal Matrix Composites (MMCs), their processing and fabrication, testing and characterization, exploration of materials for MMCs and green MMCs, and advancements in all aspects of fabrication, testing, and applications.
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The scope of this book covers the fundamental background of Metal Matrix Composites (MMCs), their processing and fabrication, testing and characterization, exploration of materials for MMCs and green MMCs, and advancements in all aspects of fabrication, testing, and applications.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 320
- Erscheinungstermin: 10. Juni 2025
- Englisch
- Abmessung: 254mm x 178mm
- ISBN-13: 9781032804521
- ISBN-10: 1032804521
- Artikelnr.: 72600178
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 320
- Erscheinungstermin: 10. Juni 2025
- Englisch
- Abmessung: 254mm x 178mm
- ISBN-13: 9781032804521
- ISBN-10: 1032804521
- Artikelnr.: 72600178
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Tharmaraj Ramakrishnan is Assistant Professor in the Department of Mechanical Engineering at SRM Institute of Science and Technology, Ramapuram Campus, Chennai, India. Tharmaraj completed his PhD in the Department of Mechanical Engineering at the National Institute of Technology Warangal, India. In the past, Tharmaraj worked as Post Doctoral Research Fellow at the Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw, Poland. His area of research interests are metal matrix composites, friction welding, and powder metal forming. PM Gopal is Assistant Professor in the Centre for Material Science, Department of Mechanical Engineering, Karpagam Academy of Higher Education, Coimbatore. He completed his master's in production engineering and PhD in mechanical engineering (in the area of MMC) at Anna University Regional Campus Coimbatore under Anna University Chennai. His areas of interest include MMC, additive manufacturing, and waste management. He has published more than 40 articles and ten book chapters in the area of composite fabrication, property analysis, and machining.
1 Processing, Properties and Applications of Metal Matrix Composites; 2
Development of Metal Matrix Composites Through Liquid State Technique; 3
Exploring Liquid Metallurgy Processes for Advanced Metal Matrix Composite;
4 Development of Metal Matrix Composites Through Solid-State Techniques; 5
Additive Manufacturing of Metal Matrix Composites; 6 A Review on Selective
Laser Melting of Aluminium Metal Matrix Composites; 7 Investigation on
Properties of Metal Matrix Composites Fabricated Through Additive
Manufacturing; 8 Advancement in Fabrication of Metal Matrix Composites; 9
Fabrication of Intelligent Metal Matrix Composites and Their Applications;
10 Investigation of the Effects of Process Parameters on Metal Matrix
Composites of A356 with SiC on Mechanical and Tribological Characteristics;
11 Mechanical Characteristics of Hybrid Metal Matrix Composites Fabricated
through Liquid State Technique; 12 Investigation on Properties of Friction
Stir Welded Metal Matrix Composites; 13 Industry 4.0 Based Approaches for
Fabrication, Processing and Testing of Metal Matrix Composites; 14 Modern
Machining of Metal Matrix Composites; 15 Conventional Machining of Metal
Matrix Composites; 16 Investigation of Electrical Discharge Machining on
Powder Metallurgy Aluminium Metal Matrix Composites; 17 Joining of Metal
Matrix Composites; 18 Advanced Forming Methods and Processing Condition of
Metal Matrix Composites; 19 Sustainable Approaches for Metal Matrix
Composites Fabrication; 20 New Insights into Metal Matrix Composite
Recycling and Reclamation
Development of Metal Matrix Composites Through Liquid State Technique; 3
Exploring Liquid Metallurgy Processes for Advanced Metal Matrix Composite;
4 Development of Metal Matrix Composites Through Solid-State Techniques; 5
Additive Manufacturing of Metal Matrix Composites; 6 A Review on Selective
Laser Melting of Aluminium Metal Matrix Composites; 7 Investigation on
Properties of Metal Matrix Composites Fabricated Through Additive
Manufacturing; 8 Advancement in Fabrication of Metal Matrix Composites; 9
Fabrication of Intelligent Metal Matrix Composites and Their Applications;
10 Investigation of the Effects of Process Parameters on Metal Matrix
Composites of A356 with SiC on Mechanical and Tribological Characteristics;
11 Mechanical Characteristics of Hybrid Metal Matrix Composites Fabricated
through Liquid State Technique; 12 Investigation on Properties of Friction
Stir Welded Metal Matrix Composites; 13 Industry 4.0 Based Approaches for
Fabrication, Processing and Testing of Metal Matrix Composites; 14 Modern
Machining of Metal Matrix Composites; 15 Conventional Machining of Metal
Matrix Composites; 16 Investigation of Electrical Discharge Machining on
Powder Metallurgy Aluminium Metal Matrix Composites; 17 Joining of Metal
Matrix Composites; 18 Advanced Forming Methods and Processing Condition of
Metal Matrix Composites; 19 Sustainable Approaches for Metal Matrix
Composites Fabrication; 20 New Insights into Metal Matrix Composite
Recycling and Reclamation
1 Processing, Properties and Applications of Metal Matrix Composites; 2
Development of Metal Matrix Composites Through Liquid State Technique; 3
Exploring Liquid Metallurgy Processes for Advanced Metal Matrix Composite;
4 Development of Metal Matrix Composites Through Solid-State Techniques; 5
Additive Manufacturing of Metal Matrix Composites; 6 A Review on Selective
Laser Melting of Aluminium Metal Matrix Composites; 7 Investigation on
Properties of Metal Matrix Composites Fabricated Through Additive
Manufacturing; 8 Advancement in Fabrication of Metal Matrix Composites; 9
Fabrication of Intelligent Metal Matrix Composites and Their Applications;
10 Investigation of the Effects of Process Parameters on Metal Matrix
Composites of A356 with SiC on Mechanical and Tribological Characteristics;
11 Mechanical Characteristics of Hybrid Metal Matrix Composites Fabricated
through Liquid State Technique; 12 Investigation on Properties of Friction
Stir Welded Metal Matrix Composites; 13 Industry 4.0 Based Approaches for
Fabrication, Processing and Testing of Metal Matrix Composites; 14 Modern
Machining of Metal Matrix Composites; 15 Conventional Machining of Metal
Matrix Composites; 16 Investigation of Electrical Discharge Machining on
Powder Metallurgy Aluminium Metal Matrix Composites; 17 Joining of Metal
Matrix Composites; 18 Advanced Forming Methods and Processing Condition of
Metal Matrix Composites; 19 Sustainable Approaches for Metal Matrix
Composites Fabrication; 20 New Insights into Metal Matrix Composite
Recycling and Reclamation
Development of Metal Matrix Composites Through Liquid State Technique; 3
Exploring Liquid Metallurgy Processes for Advanced Metal Matrix Composite;
4 Development of Metal Matrix Composites Through Solid-State Techniques; 5
Additive Manufacturing of Metal Matrix Composites; 6 A Review on Selective
Laser Melting of Aluminium Metal Matrix Composites; 7 Investigation on
Properties of Metal Matrix Composites Fabricated Through Additive
Manufacturing; 8 Advancement in Fabrication of Metal Matrix Composites; 9
Fabrication of Intelligent Metal Matrix Composites and Their Applications;
10 Investigation of the Effects of Process Parameters on Metal Matrix
Composites of A356 with SiC on Mechanical and Tribological Characteristics;
11 Mechanical Characteristics of Hybrid Metal Matrix Composites Fabricated
through Liquid State Technique; 12 Investigation on Properties of Friction
Stir Welded Metal Matrix Composites; 13 Industry 4.0 Based Approaches for
Fabrication, Processing and Testing of Metal Matrix Composites; 14 Modern
Machining of Metal Matrix Composites; 15 Conventional Machining of Metal
Matrix Composites; 16 Investigation of Electrical Discharge Machining on
Powder Metallurgy Aluminium Metal Matrix Composites; 17 Joining of Metal
Matrix Composites; 18 Advanced Forming Methods and Processing Condition of
Metal Matrix Composites; 19 Sustainable Approaches for Metal Matrix
Composites Fabrication; 20 New Insights into Metal Matrix Composite
Recycling and Reclamation