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Nickel-Titanium Smart Hybrid Materials: From Microto Nano-structured Alloys for Emerging Applications
Paperback

Nickel-Titanium Smart Hybrid Materials: From Microto Nano-structured Alloys for Emerging Applications

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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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MORE INFO
Format
Paperback
Publisher
Elsevier - Health Sciences Division
Country
United States
Date
28 January 2022
Pages
460
ISBN
9780323911733

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.

Read More
Format
Paperback
Publisher
Elsevier - Health Sciences Division
Country
United States
Date
28 January 2022
Pages
460
ISBN
9780323911733