Reprint

Shape Memory Alloys 2017

Edited by
March 2018
192 pages
  • ISBN978-3-03842-773-5 (Paperback)
  • ISBN978-3-03842-774-2 (PDF)

This book is a reprint of the Special Issue Shape Memory Alloys 2017 that was published in

Chemistry & Materials Science
Engineering
Format
  • Paperback
License
© 2019 by the authors; CC BY license
Keywords
shape memory alloy; Cu–Al–Mn; columnar grain; hot deformation; dynamic recovery; martensitic transformation; superelasticity; shape memory alloy; NiTi alloy; severe plastic deformation; microstructure; elastic constants; band Jahn–Teller effect; disorder–order transformation; shape memory alloy; NiTi alloy; plastic deformation; dynamic recrystallization; microstructure; shape memory alloy; NiTi alloy; NiTi tube; radial loading; deformation mechanism; shape memory alloy; stainless steel; barrier layer; infrared brazing; microstructure; shape memory alloy; NiTiCu alloy; constitutive behavior; phase transformation; microstructure; shape memory alloy; mechanical property; microstructures; phase transformation; shape memory alloy; NiTiNb alloy; plastic deformation; processing map; shape memory alloy; NiTi alloy; plastic deformation; crystal plasticity; finite element method; high field X-ray diffraction; NiCoMnIn; metamagnetic shape memory alloys; T-stub components; partially-restrained (PR) bolted connections; superelastic shape memory alloys (SMAs); prying action mechanism; failure modes; finite element (FE) analysis; shape memory alloys (SMAs); martensitic transformation; internal friction; dynamic mechanical analysis; ferromagnetic shape memory alloy; martensitic transition; electrical resistivity; Heusler alloy; Fe-doped Ni2MnGa; electronic specific heat coefficient; density of states; shape memory alloy; martensitic phase transformation; shape memory alloy; acoustic properties; internal friction; lattice defects; hydrogen; shape memory alloys; high temperature shape memory alloy (HTSMA); NiTiZr; NiTi; n/a