
- 394 pages
- English
- PDF
- Available on iOS & Android
About this book
The book presents the fundamentals and the role of powder metallurgy in contemporary technologies and the state of the art of classical powder metallurgy technologies and a general description of new variants and special and hybrid technologies used in powder metallurgy. The next part includes over a dozen case studies provided in the following chapters, comprehensively describing authors' accomplishments of numerous teams from different countries across the world in advanced research areas relating to powder metallurgy and to special and hybrid technologies. The detailed information, largely deriving from own and original research and R and D works pursued by the authors, will be beneficial for the readers to develop their knowledge and harmonise specific information concerning these topics and will convince the manufacturers about the advantages of using the powder metallurgy technology in many branches of industry.
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Table of contents
- Powder Metallurgy - Fundamentals and Case Studies
- Contents
- Preface
- Chapter 1 Goals and Contemporary Position of Powder Metallurgy in Products Manufacturing
- Chapter 2 Fabrication Technologies of the Sintered Materials Including Materials for Medical and Dental Application
- Chapter 3 Sintering Prealloyed Powders Fe-Ni-Cu-Mo Modified by Boron Base on Thermodynamic Investigations
- Chapter 4 Application of Direct Current Plasma Sintering Process in Powder Metallurgy
- Chapter 5 Composite Materials Infiltrated by Aluminium Alloys Based on Porous Skeletons from Alumina, Mullite and Titanium Produced by Powder Metallurgy Techniques
- Chapter 6 Fabrication, Composition, Properties and Application of the AlMg1SiCu Aluminium Alloy Matrix Composite Materials Reinforced with Halloysite or Carbon Nanotubes
- Chapter 7 Porous Selective Laser Melted Ti and Ti6Al4V Materials for Medical Applications
- Chapter 8 Powder Application in Additive Manufacturing of Metallic Parts
- Chapter 9 Fabrication, Structure, Properties and Application of Gradient Sintered Carbide-Steels with HS6-5-2 Matrix
- Chapter 10 Powder Injection Moulding of Tool Materials and Materials Containing One-Dimensional Nanostructural Elements
- Chapter 11 Manufacturing, Composition, Properties and Application of Sintered Hard Metals
- Chapter 12 Properties and Testing of Cemented Carbides
- Chapter 13 Structure and Properties of the Multicomponent and Nanostructural Coatings on the Sintered Tool Materials
- Chapter 14 Powder Eutectic Materials of Fe-Mn-C-B System for Coatings of Increased Abrasive Wear
- Chapter 15 Application of Powder Metallurgy Methods for Production of a Novel Cu‐Based Composite Frictional Train Brake Material