Surface Modifications of Titanium and Its Alloys for Biomedical Applications
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Product details:
- Edition number 1
- Publisher CRC Press
- Date of Publication 20 February 2026
- ISBN 9781032865072
- Binding Hardback
- No. of pages530 pages
- Size 234x156 mm
- Language English
- Illustrations 55 Illustrations, black & white; 18 Illustrations, color; 18 Halftones, color; 55 Line drawings, black & white; 18 Tables, black & white 700
Categories
Short description:
This book focuses on a promising achievement of biomaterials engineering: surface modifications of titanium and its alloys, including change in surface topography, formation of subsurface layers and deposition of coating.
MoreLong description:
This book focuses on a promising achievement of biomaterials engineering: surface modifications of titanium and its alloys, including change in surface topography, formation of subsurface layers, and deposition of coating.
• Describes titanium and its alloys and applied surface treatment approaches.
• Demonstrates electropolishing and anodization of titanium biomaterials, the formation of composite layers by micro-arc oxidation in electrolytes of different compositions, and laser-made surface modification.
• Details coatings based on nanohydroxyapatite, chitosan, polyetheretherketone, oils, 3 polysaccharides, and carbon nanotubes, with a separate chapter focused on the thermal stability of hydroxyapatite.
• Discusses adhesion and cohesion strengths, important because of the high mechanical stresses imposed on titanium implants.
• Considers the biological behavior of modified surfaces regarding bioactivity, cytotoxicity, and antibacterial efficiency as well as the phenomenon of biofilm formation and possible countermeasures.
Authored by world-renowned researchers, this book provides readers working in biomaterials, biomedical, and chemical engineering as well as medicine with the most important developments and practical applications in titanium surface modifications.
MoreTable of Contents:
Chapter 0 Front Matter
Chapter 1 Titanium and its alloys for bone implants: properties, challenges, and current trends in surface treatment
Chapter 2 Electropolishing and anodization of titanium and its alloys
Chapter 3 Electrochemical oxide layers obtained on titanium alloy Ti-13Nb-13Zr in medical application
Chapter 4 Micro-arc oxidation of titanium and its alloys
Chapter 5 Micro-arc oxidation assisted with other techniques: treatment of titanium and its alloys
Chapter 6 Laser-enhanced surface structurization of titanium and its alloys
Chapter 7 Fabrication and characterization of hydroxyapatite-based coatings on titanium or its alloys
Chapter 8 Thermal stability of titanium/hydroxyapatite systems
Chapter 9 Fabrication and characterization of chitosan-based bioactive coatings on titanium or its alloys
Chapter 10 Chitosan-based bioactive composite coatings on Ti alloys by electrophoretic deposition (EPD)
Chapter 11 Composite polyetheretherketone-based coatings on titanium alloys: electrophoretic deposition, heat treatment, microstructure and properties
Chapter 12 Plant-derived natural compounds as antimicrobial coating materials for titanium biomaterials
Chapter 13 Natural polysaccharide-based coatings with solid antibacterial particles for titanium or its alloys
Chapter 14 Carbon nanotube coating technology for titanium and its alloys
Chapter 15 Surface treatments for implants obtained through additive manufacturing
Chapter 16 Towards high cohesion and adhesion of coatings on titanium and its alloys
Chapter 17 Surface modifications of titanium alloys: how to achieve bioactivity and antibacterial surface not enhancing cytotoxicity?
Chapter 18 The phenomenon of biofilm formation on titanium surfaces, its clinical implications, and the search for new strategies in the development of functionalized surfaces with antibacterial properties
End Matter I List of abbreviations and acronyms
End Matter II List of symbols