Additive manufacturing of bio-implants: design and synthesis
This contributed volume presents the latest research on additive manufacturing (AM) or 3D printing, one of the key techniques of novel medical devices, which can process complicated or customized structures to match the properties of human tissues. AM allows for the fabrication of devices with optim...
Gespeichert in:
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Weitere Verfasser: | , |
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Singapore, Singapore
Springer
[2024]
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Ausgabe: | 2024 |
Schriftenreihe: | Biomedical materials for multi-functional applications
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Schlagworte: | |
Zusammenfassung: | This contributed volume presents the latest research on additive manufacturing (AM) or 3D printing, one of the key techniques of novel medical devices, which can process complicated or customized structures to match the properties of human tissues. AM allows for the fabrication of devices with optimal architectures, complicated morphologies, surface integrity, and regulated porosity and chemical composition. Various AM methods can now consistently fabricate dense products for a variety of materials, comprising steels, titanium alloys, Co-Cr alloys, metal-based composites, and nanocomposites. This book elucidates the chronology of various techniques that are categorized under additive manufacturing. Moreover, the futuristic techniques or advancements in this area are also described. The available literature focuses on the microstructure and various properties of 3D-printed alloys. However, the research on the wear characteristics, corrosion resistance, and biocompatibility of 3D-printedtechnology for biomedical applications is limited. This book comprises the helicopter view of different surface analysis trends of additive manufactured alloys. The book can be a valuable reference for beginners, researchers, and professionals interested in bioimplant manufacturing and allied fields |
Beschreibung: | Chapter 1: Challenges in Additive Manufacturing: Influence of Process Parameters on Induced Physical Properties of Printed Parts.- Chapter 2: Additive Manufacturing Incorporated Carbon Nanotubes (CNTs); Advances in biomedical domain.- Chapter 3: Formation, testing, and deposition of bioactive material using thermal spray additive manufacturing technique.- Chapter 4: Controlled Oxide Deposition Improves Mechanical and Biomedical Applications of Titanium Alloy.- Chapter 5: Instrumentation and Monitoring of Additive Manufacturing Processes for the Biomedical Applications.- Chapter 6: A Concise Study on Tribological Properties of Additive Manufactured Biomaterials.- Chapter 7: Role and Scope of OEE to Improve Additive Manufacturing Processes in Bio-Medical Industries.- Chapter 8: Corrosion Performance of Additively Manufactured Metallic Biomaterials: A Review.- Chapter 9: Emerging Functionally Graded Materials for Bio-Implant Applications- Design and Manufacturing.- Chapter 10: Biomechanical Evaluation of Load Transfer and Stability in a Corrugated Hip Stem: A Comparative Analysis.- Chapter 11: Applications of 3D Printing in Medical, Engineering, Agricultural and Other Sectors |
Beschreibung: | x, 176 Seiten Illustrationen 235 mm |
ISBN: | 9789819969043 |
Internformat
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520 | |a This contributed volume presents the latest research on additive manufacturing (AM) or 3D printing, one of the key techniques of novel medical devices, which can process complicated or customized structures to match the properties of human tissues. AM allows for the fabrication of devices with optimal architectures, complicated morphologies, surface integrity, and regulated porosity and chemical composition. Various AM methods can now consistently fabricate dense products for a variety of materials, comprising steels, titanium alloys, Co-Cr alloys, metal-based composites, and nanocomposites. This book elucidates the chronology of various techniques that are categorized under additive manufacturing. Moreover, the futuristic techniques or advancements in this area are also described. The available literature focuses on the microstructure and various properties of 3D-printed alloys. However, the research on the wear characteristics, corrosion resistance, and biocompatibility of 3D-printedtechnology for biomedical applications is limited. This book comprises the helicopter view of different surface analysis trends of additive manufactured alloys. The book can be a valuable reference for beginners, researchers, and professionals interested in bioimplant manufacturing and allied fields | ||
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spelling | Additive manufacturing of bio-implants design and synthesis Amit Mahajan, Sandeep Devgan, Redouane Zitoune, editors Singapore, Singapore Springer [2024] x, 176 Seiten Illustrationen 235 mm txt rdacontent n rdamedia nc rdacarrier Biomedical materials for multi-functional applications Chapter 1: Challenges in Additive Manufacturing: Influence of Process Parameters on Induced Physical Properties of Printed Parts.- Chapter 2: Additive Manufacturing Incorporated Carbon Nanotubes (CNTs); Advances in biomedical domain.- Chapter 3: Formation, testing, and deposition of bioactive material using thermal spray additive manufacturing technique.- Chapter 4: Controlled Oxide Deposition Improves Mechanical and Biomedical Applications of Titanium Alloy.- Chapter 5: Instrumentation and Monitoring of Additive Manufacturing Processes for the Biomedical Applications.- Chapter 6: A Concise Study on Tribological Properties of Additive Manufactured Biomaterials.- Chapter 7: Role and Scope of OEE to Improve Additive Manufacturing Processes in Bio-Medical Industries.- Chapter 8: Corrosion Performance of Additively Manufactured Metallic Biomaterials: A Review.- Chapter 9: Emerging Functionally Graded Materials for Bio-Implant Applications- Design and Manufacturing.- Chapter 10: Biomechanical Evaluation of Load Transfer and Stability in a Corrugated Hip Stem: A Comparative Analysis.- Chapter 11: Applications of 3D Printing in Medical, Engineering, Agricultural and Other Sectors This contributed volume presents the latest research on additive manufacturing (AM) or 3D printing, one of the key techniques of novel medical devices, which can process complicated or customized structures to match the properties of human tissues. AM allows for the fabrication of devices with optimal architectures, complicated morphologies, surface integrity, and regulated porosity and chemical composition. Various AM methods can now consistently fabricate dense products for a variety of materials, comprising steels, titanium alloys, Co-Cr alloys, metal-based composites, and nanocomposites. This book elucidates the chronology of various techniques that are categorized under additive manufacturing. Moreover, the futuristic techniques or advancements in this area are also described. The available literature focuses on the microstructure and various properties of 3D-printed alloys. However, the research on the wear characteristics, corrosion resistance, and biocompatibility of 3D-printedtechnology for biomedical applications is limited. This book comprises the helicopter view of different surface analysis trends of additive manufactured alloys. The book can be a valuable reference for beginners, researchers, and professionals interested in bioimplant manufacturing and allied fields Biomineralization Biomaterials Manufactures Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik (DE-588)4143413-4 Aufsatzsammlung gnd-content Mahajan, Amit edt Devgan, Sandeep edt Zitoune, Redouane edt Erscheint auch als Online-Ausgabe 978-981-99-6972-2 |
spellingShingle | Mahajan, Amit Additive manufacturing of bio-implants design and synthesis Biomineralization Biomaterials Manufactures |
subject_GND | (DE-588)4143413-4 |
title | Additive manufacturing of bio-implants design and synthesis |
title_auth | Additive manufacturing of bio-implants design and synthesis |
title_exact_search | Additive manufacturing of bio-implants design and synthesis |
title_full | Additive manufacturing of bio-implants design and synthesis Amit Mahajan, Sandeep Devgan, Redouane Zitoune, editors |
title_fullStr | Additive manufacturing of bio-implants design and synthesis Amit Mahajan, Sandeep Devgan, Redouane Zitoune, editors |
title_full_unstemmed | Additive manufacturing of bio-implants design and synthesis Amit Mahajan, Sandeep Devgan, Redouane Zitoune, editors |
title_short | Additive manufacturing of bio-implants |
title_sort | additive manufacturing of bio implants design and synthesis |
title_sub | design and synthesis |
topic | Biomineralization Biomaterials Manufactures |
topic_facet | Biomineralization Biomaterials Manufactures Aufsatzsammlung |
work_keys_str_mv | AT mahajanamit additivemanufacturingofbioimplantsdesignandsynthesis AT devgansandeep additivemanufacturingofbioimplantsdesignandsynthesis AT zitouneredouane additivemanufacturingofbioimplantsdesignandsynthesis |