This reference text covers advanced materials, their properties, processing and applications in a single volume. It will serve as a useful text for graduate students and academic researchers in areas including materials science, manufacturing engineering, mechanical engineering, and industrial engineering.
This reference text covers advanced materials, their properties, processing and applications in a single volume. It will serve as a useful text for graduate students and academic researchers in areas including materials science, manufacturing engineering, mechanical engineering, and industrial engineering.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
Produktdetails
Mathematical Engineering, Manufacturing, and Management Sciences
1. Bio-Mechanical Engineering and Health. 2. Introduction to Cross Rolling of Biomedical Alloys. 3. Additive Manufacturing and Characterisation of Biomedical Materials. 4. Cellulose - A Sustainable Material for Biomedical Applications. 5. Magnetic Iron Oxide Nanoparticles for Biomedical Applications. 6. Magnesium-Based Nanocomposite for Biomedical Applications. 7. Magnesium Alloy for Biomedical Applications. 8. Investigation of Titanium Lattice Structures for Biomedical Implants. 9. Cost Estimation of Polymer Material for Biomedical Application. 10. Nanostructured Biomaterials for Load-Bearing Applications. 11. Improved Biodegradable Implant Materials for Orthopaedic Applications. 12. Fracture Performance Evaluation of Additively Manufactured Titanium Alloy. 13. Design of Low Cost Prosthetic Leg Using Magnetorheological Fluid. 14. FEA Analysis of Humerus Bone Fracture and Healing. 15. Design of Energy Harvesting Mechanism for Walking Applications.
1. Bio-Mechanical Engineering and Health. 2. Introduction to Cross Rolling of Biomedical Alloys. 3. Additive Manufacturing and Characterisation of Biomedical Materials. 4. Cellulose - A Sustainable Material for Biomedical Applications. 5. Magnetic Iron Oxide Nanoparticles for Biomedical Applications. 6. Magnesium-Based Nanocomposite for Biomedical Applications. 7. Magnesium Alloy for Biomedical Applications. 8. Investigation of Titanium Lattice Structures for Biomedical Implants. 9. Cost Estimation of Polymer Material for Biomedical Application. 10. Nanostructured Biomaterials for Load-Bearing Applications. 11. Improved Biodegradable Implant Materials for Orthopaedic Applications. 12. Fracture Performance Evaluation of Additively Manufactured Titanium Alloy. 13. Design of Low Cost Prosthetic Leg Using Magnetorheological Fluid. 14. FEA Analysis of Humerus Bone Fracture and Healing. 15. Design of Energy Harvesting Mechanism for Walking Applications.
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