Polymer Composites for Prosthetics Development
Editat de AZ Najihah, AN Aufa, Mohamad Zaki Hassan, Indran Suyambulingamen Limba Engleză Hardback – 14 ian 2027
• Covers various composite materials, including thermoplastics, natural fibers, synthetic fibers and smart polymers.
• Offers practical insight into properties, durability, fatigue resistance, and skin tissue applications.
• Discusses optimization of polymer composites including strength, toughness, fabrication methods, and sustainability.
• Includes emerging trends in additive manufacturing for biomedical applications.
• Examines future directions and the current state of prosthetic technology development, including clinical status.
Exploring the latest advances and technologies, this reference is aimed at researchers in biomedical and materials engineering working in this rapidly evolving area.
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Specificații
ISBN-13: 9781041207306
ISBN-10: 1041207301
Pagini: 544
Ilustrații: 240
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
ISBN-10: 1041207301
Pagini: 544
Ilustrații: 240
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
Public țintă
Academic and Professional ReferenceCuprins
0. Front Matter. PART 1. PRINCIPLE OF POLYMER COMPOSITES. 1. Introduction to prosthetic and artificial limb. 2. General material for prosthetic design. 3. Plastic and polymeric in prosthetics application. 4. Advancement in composites for prosthetic application. PART 2. TRENDS AND ADVANCEMENT IN POLYMER COMPOSITES. 5. From hand-crafting to advanced manufacturing of prosthetic application. 6. Natural Fiber Composites in Prosthetic Applications. 7. Synthetic Fiber Composites in Prosthetic Applications. 8. Current trends in nano reinforcement in composite for prosthetic application. PART 3. EVALUATING POLYMER COMPOSITES IN PROSTHETIC DESIGN AND PERFORMANCE. 9. Pressure measurement and comfort polymer composite for prosthetic. 10. Mechanical test of polymer composites for prosthetic. 11. Biodegradability test of Polymer Composites for Prosthetic. PART 4. POLYMER COMPOSITES IN CLINICAL SETTINGS. 12. Biomimicry of Polymers composite for prosthetic. 13. Biomechanic of polymer composite for human limb. 14. Sustainability of polymers composite for prosthetic. 15. Clinical status of polymers composite for prosthetic. 16. Limitation and challenges in fabricating user-centric prosthetic. 17. Future Materials for Prosthetics.
Notă biografică
AZ Najihah received her Bachelor’s degree in Biomedical Engineering from Universiti Teknologi Malaysia and is pursuing her Master’s degree at the same university. Her research is dedicated to advancing biopolymers with a primary focus on hydrogel applications for cartilage tissue engineering.
AN Aufa obtained her degree in Biomedical Electronic Engineering and is pursuing her Ph.D. at Universiti Teknologi Malaysia. Her research focuses on the application of additive manufacturing of bone implants.
Mohamad Zaki Hassan is Associate Professor at Universiti Teknologi Malaysia Kuala Lumpur's Razak Faculty of Technology and Informatics. He earned a Ph.D. in Mechanical Engineering from the University of Liverpool. UK. He researches the use of natural fibres as reinforcement in composite materials.
Indran Suyambulingam is a Professor in the Department of Mechanical Engineering at the Alliance College of Engineering and Design, Alliance University, Bengaluru, India. He previously served as a Research Scientist at the Natural Composites Research Group, King Mongkut's University of Technology North Bangkok, Thailand. Recognized among Stanford University's World's Top 2% Scientists and as a Highly Cited Scientist, he earned his B.E. in Mechanical Engineering (2009), M.E. in Engineering Design (Gold Medal, 2011), and Ph.D. in Mechanical Engineering (2015) from Anna University under the prestigious DST–INSPIRE Fellowship. He is a Member of ISTE and a member of IAENG, ISME, and SAE India. Dr. Suyambulingam received the Innovative Technological Research & Dedicated Teaching Professional Award (JETR, Malaysia, 2017) and was selected as a Young Scientist under the MHRD–TNSCST programme. He holds two patents and has authored numerous publications in advanced materials and manufacturing. His research interests include prosthetics, biomaterials, tribology, agro-waste valorization, natural fibre composites, and sustainable materials.
AN Aufa obtained her degree in Biomedical Electronic Engineering and is pursuing her Ph.D. at Universiti Teknologi Malaysia. Her research focuses on the application of additive manufacturing of bone implants.
Mohamad Zaki Hassan is Associate Professor at Universiti Teknologi Malaysia Kuala Lumpur's Razak Faculty of Technology and Informatics. He earned a Ph.D. in Mechanical Engineering from the University of Liverpool. UK. He researches the use of natural fibres as reinforcement in composite materials.
Indran Suyambulingam is a Professor in the Department of Mechanical Engineering at the Alliance College of Engineering and Design, Alliance University, Bengaluru, India. He previously served as a Research Scientist at the Natural Composites Research Group, King Mongkut's University of Technology North Bangkok, Thailand. Recognized among Stanford University's World's Top 2% Scientists and as a Highly Cited Scientist, he earned his B.E. in Mechanical Engineering (2009), M.E. in Engineering Design (Gold Medal, 2011), and Ph.D. in Mechanical Engineering (2015) from Anna University under the prestigious DST–INSPIRE Fellowship. He is a Member of ISTE and a member of IAENG, ISME, and SAE India. Dr. Suyambulingam received the Innovative Technological Research & Dedicated Teaching Professional Award (JETR, Malaysia, 2017) and was selected as a Young Scientist under the MHRD–TNSCST programme. He holds two patents and has authored numerous publications in advanced materials and manufacturing. His research interests include prosthetics, biomaterials, tribology, agro-waste valorization, natural fibre composites, and sustainable materials.
Descriere
This work examines how polymer composites are advancing prosthetic technology. It introduces the biomechanics of prosthetics, materials properties and fabrication procedures, and advances in comfort and sustainability. Clinical applications are covered with an emphasis on prosthetic solutions.