Nickel-Titanium Smart Hybrid Materials: From Micro- to Nano-structured Alloys for Emerging Applications describes advanced properties that can be adapted in NiTi-alloys. Nickel-Titanium (NiTi) systems are receiving wide demand in growing industries due to their smart, high-temperature or biocompatible behavior. These influenced behaviors are carefully described in the micro-scale and nanoscale range, with NiTi smart materials described on the basis of their shape memory effect (SME) and super-elastic (SE) properties for sensor and actuator application. This book discusses novel properties of nickel-titanium systems, helping materials scientists and engineers produce smart technologies and systems for the aeronautical, automobile, mechanical, healthcare and electronics industries.
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Part 1 Fundamentals 1. NiTi-based smart micro- and nanoalloys: an introduction 2. Methods for fabrication of NiTi micro- and nanoalloys 3. Constitutive modeling of NiTi-based shape memory alloys 4. Cryo-treatment of NiTi alloys 5. Heat treatment of NiTi alloys Part 2 Micro-/nanostructures and properties 6. NiTi superalloys 7. NiTi-based ternary shape-memory alloys 8. NiTi superhydrophobic materials 9. NiTi plasma spray coating 10. Biocompatibility of NiTi 11. NiTi-based ternary alloys 12. NiTi-based coupling devices Part 3 Emerging applications 13. Thermal spraying of NiTi alloy 14. Nickel_titanium smart hybrid materials for automotive industry 15. Biomedical applications of NiTi alloys 16. Smart applications of NiTi shape memory alloy in biomedical industries 17. NiTi smart alloys in electronic and electrical equipment 18. NiTi joining with other metallic materials 19. NiTi shape memory alloys: properties
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A detailed examination of the properties, manufacture and industrial applications of nickel-titanium nanoalloys
Describes the use of nanotechnology and microtechnology in nickel-titanium-based systems Outlines the major properties of Nickel-Titanium Nanoalloys Assesses the major challenges of manufacturing nickel-titanium nanoalloys at an industrial scale
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Produktdetaljer

ISBN
9780323911733
Publisert
2022-01-28
Utgiver
Vendor
Elsevier - Health Sciences Division
Vekt
950 gr
Høyde
235 mm
Bredde
191 mm
Aldersnivå
P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
460

Om bidragsyterne

Prof. Sabu Thomas is the Chairman of the Trivandrum Engineering Science & Technology Research Park (TrEST Research Park) in Thiruvananthapuram, India. Additionally, he is a Professor of Polymer Science and Engineering and the Director of the School of Energy Materials at Mahatma Gandhi University, India. He is the founder director of the International and Inter-university Centre for Nanoscience and Nanotechnology at Mahatma Gandhi University and the former Vice-Chancellor of the same institution. Prof. Thomas is internationally recognized for his contributions to polymer science and engineering, with his research interests encompassing polymer nanocomposites, elastomers, polymer blends, interpenetrating polymer networks, polymer membranes, green composites, nanocomposites, nanomedicine, and green nanotechnology. His groundbreaking inventions in polymer nanocomposites, polymer blends, green bionanotechnology, and nano-biomedical sciences have significantly advanced the development of new materials for the automotive, space, housing, and biomedical fields. Dr. Thomas has been conferred with Honoris Causa (DSc) by the University of South Brittany, France. Dr. Ajit Behera is an Assistant Professor in the Metallurgical and Materials Department at the National Institute of Technology, India. He completed his Ph.D. from IIT-Kharagpur in 2016. Dr. Behera has received several prestigious awards, including the National "Yuva Rattan Award" in 2020, the "Young Faculty Award" in 2017, and the "C.V. Raman Award" in 2019. His research interests encompass smart materials, additive manufacturing, 3D & 4D printing, NiTi-alloys, plasma surface engineering, nanotechnology, magnetron-sputtered thin film, cryo-treatment, and the utilization of industrial waste. Dr. Behera has also contributed to the field with the publication of two patents related to smart materials. Tuan Anh Nguyen is Principal Research Scientist at the Institute for Tropical Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam. His research focuses on advanced nanomaterials and nanotechnology for corrosion and materials integrity in transportation systems. His research activities include smart coatings, conducting polymers, corrosion and protection of metals/concrete, antibacterial materials, and advanced nanomaterials.