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Superelastic Effect in Polycrystalline Ferrous Alloys
by
Omori, T.
, Ando, K.
, Ohnuma, I.
, Okano, M.
, Kainuma, R.
, Xu, X.
, Ishida, K.
, Tanaka, Y.
in
Alloys
/ Climate
/ Condensed matter: structure, mechanical and thermal properties
/ Cooling
/ Cross-disciplinary physics: materials science; rheology
/ Curie temperature
/ Deformation
/ Elasticity
/ Elasticity, elastic constants
/ Entropy
/ Exact sciences and technology
/ Ferrous alloys
/ Gibbs free energy
/ Magnetic fields
/ Magnetization
/ Martensite
/ Martensitic transformation
/ Martensitic transformations
/ Materials science
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
/ Physics
/ Polycrystals
/ Scientific Concepts
/ Stress analysis
/ Stresses
/ Superelasticity
/ temperature
/ Temperature dependence
/ Transformation entropy
2011
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Superelastic Effect in Polycrystalline Ferrous Alloys
by
Omori, T.
, Ando, K.
, Ohnuma, I.
, Okano, M.
, Kainuma, R.
, Xu, X.
, Ishida, K.
, Tanaka, Y.
in
Alloys
/ Climate
/ Condensed matter: structure, mechanical and thermal properties
/ Cooling
/ Cross-disciplinary physics: materials science; rheology
/ Curie temperature
/ Deformation
/ Elasticity
/ Elasticity, elastic constants
/ Entropy
/ Exact sciences and technology
/ Ferrous alloys
/ Gibbs free energy
/ Magnetic fields
/ Magnetization
/ Martensite
/ Martensitic transformation
/ Martensitic transformations
/ Materials science
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
/ Physics
/ Polycrystals
/ Scientific Concepts
/ Stress analysis
/ Stresses
/ Superelasticity
/ temperature
/ Temperature dependence
/ Transformation entropy
2011
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Superelastic Effect in Polycrystalline Ferrous Alloys
by
Omori, T.
, Ando, K.
, Ohnuma, I.
, Okano, M.
, Kainuma, R.
, Xu, X.
, Ishida, K.
, Tanaka, Y.
in
Alloys
/ Climate
/ Condensed matter: structure, mechanical and thermal properties
/ Cooling
/ Cross-disciplinary physics: materials science; rheology
/ Curie temperature
/ Deformation
/ Elasticity
/ Elasticity, elastic constants
/ Entropy
/ Exact sciences and technology
/ Ferrous alloys
/ Gibbs free energy
/ Magnetic fields
/ Magnetization
/ Martensite
/ Martensitic transformation
/ Martensitic transformations
/ Materials science
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
/ Physics
/ Polycrystals
/ Scientific Concepts
/ Stress analysis
/ Stresses
/ Superelasticity
/ temperature
/ Temperature dependence
/ Transformation entropy
2011
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Journal Article
Superelastic Effect in Polycrystalline Ferrous Alloys
2011
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Overview
In superelastic alloys, large deformation can revert to a memorized shape after removing the stress. However, the stress increases with increasing temperature, which limits the practical use over a wide temperature range. Polycrystalline Fe-Mn-Al-Ni shape memory alloys show a small temperature dependence of the superelastic stress because of a small transformation entropy change brought about by a magnetic contribution to the Gibbs energies. For one alloy composition, the superelastic stress varies by 0.53 megapascal/°C over a temperature range from −196 to 240°C.
Publisher
American Association for the Advancement of Science,The American Association for the Advancement of Science
Subject
/ Climate
/ Condensed matter: structure, mechanical and thermal properties
/ Cooling
/ Cross-disciplinary physics: materials science; rheology
/ Elasticity, elastic constants
/ Entropy
/ Exact sciences and technology
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
/ Physics
/ Stresses
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