Surface Engineering of Biomaterials (eBook, ePUB)
Synthesis and Processing Techniques
Redaktion: Behera, Ajit; Swain, Biswajit Kumar; Nayak, Debasis
183,95 €
183,95 €
inkl. MwSt.
Sofort per Download lieferbar
92 °P sammeln
183,95 €
Als Download kaufen
183,95 €
inkl. MwSt.
Sofort per Download lieferbar
92 °P sammeln
Jetzt verschenken
Alle Infos zum eBook verschenken
183,95 €
inkl. MwSt.
Sofort per Download lieferbar
Alle Infos zum eBook verschenken
92 °P sammeln
Surface Engineering of Biomaterials (eBook, ePUB)
Synthesis and Processing Techniques
Redaktion: Behera, Ajit; Swain, Biswajit Kumar; Nayak, Debasis
- Format: ePub
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei
bücher.de, um das eBook-Abo tolino select nutzen zu können.
Hier können Sie sich einloggen
Hier können Sie sich einloggen
Sie sind bereits eingeloggt. Klicken Sie auf 2. tolino select Abo, um fortzufahren.
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei bücher.de, um das eBook-Abo tolino select nutzen zu können.
This reference work helps researchers working at the intersection of materials science and biotechnology to engineer functional biomaterials for a variety of applications.
- Geräte: eReader
- ohne Kopierschutz
- eBook Hilfe
- Größe: 14.02MB
This reference work helps researchers working at the intersection of materials science and biotechnology to engineer functional biomaterials for a variety of applications.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 626
- Erscheinungstermin: 20. März 2024
- Englisch
- ISBN-13: 9781003848356
- Artikelnr.: 69913033
- Verlag: Taylor & Francis
- Seitenzahl: 626
- Erscheinungstermin: 20. März 2024
- Englisch
- ISBN-13: 9781003848356
- Artikelnr.: 69913033
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Ajit Behera is Assistant Professor in the Metallurgical & Materials Department at National Institute of Technology, Rourkela, India. He completed his PhD at IIT Kharagpur. Debasis Nayak is Research Associate in the Department of Material Science and Metallurgy, University of Cambridge, UK. He completed his PhD at IIT Kharagpur. Biswajit Kumar Swain is Research Scientist at Sahajanand Medical Technologies, India. He obtained his PhD in surface engineering of smart materials from the Department of Metallurgical & Materials Engineering, National Institute of Technology Rourkela, India.
Section 1: Introduction to Biomaterials Surface Engineering. 1.
Introduction to Biomaterial Surface Engineering. 2. Criteria for
Biomaterial Surface Selection. 3. Biomaterial Surfaces and Their
Properties. 4. Smart Biomaterials and Their Applications. 5. Smart
Materials for Bioimplant. 6. Classification of Biomaterials and Surface
Strategies. 7. Corrosion, Degradation, and Material Release by
Biomaterials. Section 2: Surface Synthesis and Engineering of Biomaterials.
8. Various Processing Routes for Biocompatible Materials: From Conventional
Process to Additive Manufacturing. 9. Biofilm for Implant Materials. 10.
Additive Manufactured Biomaterials Surfaces. 11. Various Additive
Manufacturing Techniques for the Fabrication of Biomaterials. 12. Surface
Modification: Carbide-, Silicide-, Nitride-Based Surface. 13.
Nanoengineering in Biomaterials. 14. Smart Biomaterial Surface. 15. Energy
Biomaterial Surface. Section 3: Post-Modification of Biomaterial Surface.
16. Surface Treatment of Polymeric, Ceramic, Metallic and Composite
Biomaterials for Bioimplants and Medical Device Applications. 17. Surface
Functionalization for Biomaterials. 18. Surface Modification Technologies
and Methods of Biomaterials. 19. Mechanical Surface Treatments of
Biomaterials. 20. Heat Treatment for Biomaterial Surface. 21. Surface
Modification of Magnetic Nanoparticles for Biomaterials. 22. Phenomenology
of Treatment of Biomaterial Surfaces. 23. LASER-based Surface Modification
Techniques for Fatigue Life Improvement of Biomaterials. 24. Coating of
High Entropy Alloys in Biomedical Application. 25. Surface Strategies and
Classification of Biomaterials. 26: Functional Surfaces for Biomaterials
Introduction to Biomaterial Surface Engineering. 2. Criteria for
Biomaterial Surface Selection. 3. Biomaterial Surfaces and Their
Properties. 4. Smart Biomaterials and Their Applications. 5. Smart
Materials for Bioimplant. 6. Classification of Biomaterials and Surface
Strategies. 7. Corrosion, Degradation, and Material Release by
Biomaterials. Section 2: Surface Synthesis and Engineering of Biomaterials.
8. Various Processing Routes for Biocompatible Materials: From Conventional
Process to Additive Manufacturing. 9. Biofilm for Implant Materials. 10.
Additive Manufactured Biomaterials Surfaces. 11. Various Additive
Manufacturing Techniques for the Fabrication of Biomaterials. 12. Surface
Modification: Carbide-, Silicide-, Nitride-Based Surface. 13.
Nanoengineering in Biomaterials. 14. Smart Biomaterial Surface. 15. Energy
Biomaterial Surface. Section 3: Post-Modification of Biomaterial Surface.
16. Surface Treatment of Polymeric, Ceramic, Metallic and Composite
Biomaterials for Bioimplants and Medical Device Applications. 17. Surface
Functionalization for Biomaterials. 18. Surface Modification Technologies
and Methods of Biomaterials. 19. Mechanical Surface Treatments of
Biomaterials. 20. Heat Treatment for Biomaterial Surface. 21. Surface
Modification of Magnetic Nanoparticles for Biomaterials. 22. Phenomenology
of Treatment of Biomaterial Surfaces. 23. LASER-based Surface Modification
Techniques for Fatigue Life Improvement of Biomaterials. 24. Coating of
High Entropy Alloys in Biomedical Application. 25. Surface Strategies and
Classification of Biomaterials. 26: Functional Surfaces for Biomaterials
Section 1: Introduction to Biomaterials Surface Engineering. 1.
Introduction to Biomaterial Surface Engineering. 2. Criteria for
Biomaterial Surface Selection. 3. Biomaterial Surfaces and Their
Properties. 4. Smart Biomaterials and Their Applications. 5. Smart
Materials for Bioimplant. 6. Classification of Biomaterials and Surface
Strategies. 7. Corrosion, Degradation, and Material Release by
Biomaterials. Section 2: Surface Synthesis and Engineering of Biomaterials.
8. Various Processing Routes for Biocompatible Materials: From Conventional
Process to Additive Manufacturing. 9. Biofilm for Implant Materials. 10.
Additive Manufactured Biomaterials Surfaces. 11. Various Additive
Manufacturing Techniques for the Fabrication of Biomaterials. 12. Surface
Modification: Carbide-, Silicide-, Nitride-Based Surface. 13.
Nanoengineering in Biomaterials. 14. Smart Biomaterial Surface. 15. Energy
Biomaterial Surface. Section 3: Post-Modification of Biomaterial Surface.
16. Surface Treatment of Polymeric, Ceramic, Metallic and Composite
Biomaterials for Bioimplants and Medical Device Applications. 17. Surface
Functionalization for Biomaterials. 18. Surface Modification Technologies
and Methods of Biomaterials. 19. Mechanical Surface Treatments of
Biomaterials. 20. Heat Treatment for Biomaterial Surface. 21. Surface
Modification of Magnetic Nanoparticles for Biomaterials. 22. Phenomenology
of Treatment of Biomaterial Surfaces. 23. LASER-based Surface Modification
Techniques for Fatigue Life Improvement of Biomaterials. 24. Coating of
High Entropy Alloys in Biomedical Application. 25. Surface Strategies and
Classification of Biomaterials. 26: Functional Surfaces for Biomaterials
Introduction to Biomaterial Surface Engineering. 2. Criteria for
Biomaterial Surface Selection. 3. Biomaterial Surfaces and Their
Properties. 4. Smart Biomaterials and Their Applications. 5. Smart
Materials for Bioimplant. 6. Classification of Biomaterials and Surface
Strategies. 7. Corrosion, Degradation, and Material Release by
Biomaterials. Section 2: Surface Synthesis and Engineering of Biomaterials.
8. Various Processing Routes for Biocompatible Materials: From Conventional
Process to Additive Manufacturing. 9. Biofilm for Implant Materials. 10.
Additive Manufactured Biomaterials Surfaces. 11. Various Additive
Manufacturing Techniques for the Fabrication of Biomaterials. 12. Surface
Modification: Carbide-, Silicide-, Nitride-Based Surface. 13.
Nanoengineering in Biomaterials. 14. Smart Biomaterial Surface. 15. Energy
Biomaterial Surface. Section 3: Post-Modification of Biomaterial Surface.
16. Surface Treatment of Polymeric, Ceramic, Metallic and Composite
Biomaterials for Bioimplants and Medical Device Applications. 17. Surface
Functionalization for Biomaterials. 18. Surface Modification Technologies
and Methods of Biomaterials. 19. Mechanical Surface Treatments of
Biomaterials. 20. Heat Treatment for Biomaterial Surface. 21. Surface
Modification of Magnetic Nanoparticles for Biomaterials. 22. Phenomenology
of Treatment of Biomaterial Surfaces. 23. LASER-based Surface Modification
Techniques for Fatigue Life Improvement of Biomaterials. 24. Coating of
High Entropy Alloys in Biomedical Application. 25. Surface Strategies and
Classification of Biomaterials. 26: Functional Surfaces for Biomaterials