Pseudoelasticity and Shape Memory Effect in Single Crystal Fe\u3csub\u3e3\u3c/sub\u3eAl [PDF]
Fe3Al is an intermetallic compound which has shown some excellent engineering properties and has been widely studied for this reason. It also shows interesting mechanical phenomenon like yield stress anomaly and pseudoelasticity.
Kabra, Saurabh
core
Investigations of Effects of Intermetallic Compound on the Mechanical Properties and Shape Memory Effect of Ti-Au-Ta Biomaterials. [PDF]
Chiu WT +5 more
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Superelasticity in micro/nanostructured materials
Achieving reversible strain greater than 1%, known as superelasticity, is highly desirable for practical applications across diverse fields, including medical care, transportation, and daily life.
Fucheng Li +4 more
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Technological peculiarities of micromilling texturing of NiTi alloy surfaces
NiTi alloys are characterized by shape memory effect, pseudoelasticity, corrosion resistance, and biocompatibility, which determines their wide application in medicine, instrumentation, mechanical engineering, and many other industries.
N.O. Balytska
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Pseudoelasticity and Pseudotwinning in Ordered Shape-Memory Alloys
Shape-memory behavior is a complicated phenomenon which Intimately relates macroscopic strain recovery with martensitic phase transformation. A vital step In the theoretical understanding of this effect is a clear picture of a superficially rather ...
A. Zangwill, R. Bruinsma
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Calculation Model of Mechanical and Sealing Properties of NiTi Alloy Corrugated Gaskets under Shape Memory Effect and Hyperelastic Coupling: I Mechanical Properties. [PDF]
Zhu L, Liu Y, Li M, Lu X, Zhu X.
europepmc +1 more source
Effect of Alloying Elements (Ga, Ge, Si) on Pseudoelasticity in Fe3Al Single Crystals
Pseudoelasticity in Fe3Al single crystals doped with a small amount of Ga, Ge and Si was investigated focusing on the antiphase boundary (APB) energy and the ordered domain structure. Single crystals of Fe-23at%Al and Fe-21at%Al-2at%X (X=Ga, Ge, Si) were
Takashi Kase +2 more
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Effect of pseudoelasticity of nanocrystalline titanium-nickel on wear
The purpose of this research was to investigate the effect of nanocrystalline structure on shape memory (SM) property and pseudoelasticity (PE) of TiNi alloys with a special focus on the application in tribology.
Dey, Sanjib K.
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Elastic shape memory effect in In-Pb alloys in the temperature range 0.48–180 K
Natsik V., Fomenko L., Lubenets S.
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The effect of temperature on low-cycle fatigue of shape memory alloy
The influence of temperature on the fatigue properties of pseudoelastic NiTi under low-cycle fatigue are investigated. Tests were performed under the uniaxial tensile deformation (pull-pull) at 0°С and 20°С which is above the austenite finish temperature.
Volodymyr Iasnii +3 more
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