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Titanium-Based Advanced Materials and Metal Injection Molding [Minkštas viršelis]

  • Formatas: Paperback / softback, 132 pages, aukštis x plotis x storis: 240x170x7 mm, weight: 370 g, Illustrations
  • Išleidimo metai: 01-Apr-2025
  • Leidėjas: Trans Tech Publications Ltd
  • ISBN-10: 3036407626
  • ISBN-13: 9783036407623
Kitos knygos pagal šią temą:
Titanium-Based Advanced Materials and Metal Injection Molding
  • Formatas: Paperback / softback, 132 pages, aukštis x plotis x storis: 240x170x7 mm, weight: 370 g, Illustrations
  • Išleidimo metai: 01-Apr-2025
  • Leidėjas: Trans Tech Publications Ltd
  • ISBN-10: 3036407626
  • ISBN-13: 9783036407623
Kitos knygos pagal šią temą:
Titanium and titanium-based materials have long been at the forefront of advanced materials research, owing to their exceptional strength-to-weight ratio, corrosion resistance, and high-temperature performance. Their determinative role in aerospace, automotive, biomedical, and other industrial applications underscores the importance of continuous advancements in titanium-related technologies. This special edition aims to provide a comprehensive overview of recent research results and achievements in three key areas: titanium aluminides, titanium matrix composites, metal injection moulding and sinter-based additive manufacturing. Researchers and engineers will find this special edition useful for understanding the latest advancements and prospects in titanium technology.
Preface
Chapter 1: Titanium Aluminides
Powder Metallurgy and Heat Treatment Effects on Microstructure in a -TiAl
Ti-4522XD Alloy
Sintering Titanium Aluminides with Co Addition
Effect of Heat Treatment Temperature and Rolling on Microstructure and
Mechanical Property of Powder Metallurgy Ti43Al9V(Y) Alloy in Electron
Backscattering Diffraction
Chapter 2: Titanium Matrix Composites
Recent Developments in Producing Highly Dense Ti Matrix Composites via Powder
Metallurgy Approaches
Additive Manufacturing of TiBw-Reinforced Titanium Matrix Composites
Fabricated by Electron Beam Melting: Microstructure and Mechanical
Properties
Optimizing Titanium-Boron Carbide Composites for Aerospace Manufacturing via
Plasma Metal Deposition
Microstructural Development of Ti-35Nb-TiC Metal Matrix Composites
Enhancing Wear Resistance of Titanium Alloys: Insights from Tribological
Testing
Improvement of the Mechanical Properties of a P/M Ti-6Al-4V Alloy with
Additions of Carbon and Silicon
Chapter 3: Metal Injection Molding and Sinter-Based Additive Manufacturing
Suitability of Novel Titanium Powder for Metal Injection Moulding
Application
Interaction of Binder and Powder in Processing of Titanium by MEX-AM
Processing of a Beta Titanium Alloy by Metal Injection Molding (MIM)
Comparing Lithography-Based Metal Manufacturing for Titanium with Established
Processes such as Cold Metal Fusion