Keywords: آلیاژهای حافظه شکل (SMAs); Evolving computing (EC); Shape memory alloys (SMAs); Cellular automated (CA) meta-modeling; Self-organizing (Kohonen) maps (SOMs); The Great Salmon Run (TGSR) optimization algorithm; System identification; Incremental learning
مقالات ISI آلیاژهای حافظه شکل (SMAs) (ترجمه نشده)
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Shape memory behaviors in a Ti50Ni33.5Cu12.5Pd4 alloy with near-zero thermal hysteresis
Keywords: آلیاژهای حافظه شکل (SMAs); Ti-Ni-Cu-Pd alloy; Shape memory alloys (SMAs); Martensitic phase transformation; Shape memory effect (SME);
Martensite structure and mechanical property of Ti-Nb-Ag shape memory alloys for biomedical applications
Keywords: آلیاژهای حافظه شکل (SMAs); Ti-Nb based alloys; Biomaterials; Shape memory alloys (SMAs); Shape memory effect (SME); Martensite structure;
Effect of annealing temperature on shape memory effect of cold-rolled Ti-16Â at.%Nb alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Ti-Nb alloys; Shape memory alloys (SMAs); Shape memory effect (SME); Martensite structure;
In vitro investigation of NiTiW shape memory alloy as potential biomaterial with enhanced radiopacity
Keywords: آلیاژهای حافظه شکل (SMAs); Metals and alloys; Shape memory alloys (SMAs); Phase transformation; Radiopacity; Corrosion behavior; Biomaterials;
Thermomechanical fatigue of post-weld heat treated NiTi shape memory alloy wires
Keywords: آلیاژهای حافظه شکل (SMAs); NiTi; Shape memory alloys (SMAs); Laser welding; Thermomechanical fatigue; Post-weld heat treatment
The effect of cyclic tensile loading on the stress-induced transformation mechanism in superelastic NiTi alloys: an in-situ X-ray diffraction study
Keywords: آلیاژهای حافظه شکل (SMAs); NiTi; Shape memory alloys (SMAs); Martensitic phase transformation; X-ray diffraction (XRD); Fatigue;
Thermal cycling stability mechanism of Ti50.5Ni33.5Cu11.5Pd4.5 shape memory alloy with near-zero hysteresis
Keywords: آلیاژهای حافظه شکل (SMAs); Ti-Ni-Cu-Pd alloy; Shape memory alloys (SMAs); Martensitic phase transformation; Thermodynamics; Transmission electron microscopy (TEM);
On the effect of gamma phase formation on the pseudoelastic performance of polycrystalline Fe-Mn-Al-Ni shape memory alloys
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Microstructure; Quenching; Precipitation; Mechanical properties;
Surface roughness-controlled superelastic hysteresis in shape memory microwires
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Atomic force microscopy (AFM); Damping; Drawing; Fibers
Effect of oriented γⲠprecipitates on shape memory effect and superelasticity in Co-Ni-Ga single crystals
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Nanoparticles; Two-phase materials; High-resolution electron microscopy; Mechanical testing;
Thermoelastic martensitic transformation and superelasticity in Fe–Ni–Co–Al–Nb–B polycrystalline alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Martensitic phase transformations; Shape memory alloys (SMAs); Iron alloys; Precipitation; Superelastic alloys
Microstructure and mechanical properties of a Ni30Cu20Mn41.5Ga8.5 dual-phase shape memory alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Ni-Mn-Ga; Shape memory alloys (SMAs); Martensitic transformation; Ductility;
Grain size dependence of pseudoelasticity in polycrystalline Cu–Al–Mn-based shape memory sheets
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Cu-base SMA; Stress-induced martensitic transformation; Superelasticity; Grain size
Kinetic grain growth, shape memory and corrosion behavior of two Cu-based shape memory alloys after thermomechanical treatment
Keywords: آلیاژهای حافظه شکل (SMAs); shape memory alloys (SMAs); grain refinement; corrosion; shape memory properties;
Structure analysis of a precipitate phase in an Ni-rich high-temperature NiTiHf shape memory alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Precipitation; Crystal structure; High-angle annular dark field (HAADF); Ab initio electron theory
Superelastic response and damping capacity of ultrahigh-strength [1 1 1]-oriented NiTiHfPd single crystals
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Phase transformation; Damping; Compression test; High-strength shape memory alloys
The effect of Fe additions on the shape memory properties of Ru-based alloys
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Compression test; Differential scanning calorimetry (DSC); Ru-based alloys
Study of Ni–Mn–Ga–Cu as single-phase wide-hysteresis shape memory alloys
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Ni–Mn–Ga–Cu; Martensitic transformation; Wide-hysteresis
Influence of chemical composition on the damping characteristics of Cu-Al-Ni shape memory alloys
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Martensitic transformation; Internal friction; Dynamic mechanical analysis;
Transmission electron microscopy of antiphase boundary-like structure of B19′ martensite in Ti–Ni shape memory alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Antiphase boundary; Martensitic phase transformation; Shape memory alloys (SMAs); Transmission electron microscopy (TEM)
Occurrence and origin of non-martensitic acicular artifacts on NiTi
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Microstructure; Martensitic phase transformation; Surface structure; Auger electron spectroscopy (AES)
Bimodal nanocrystallization of NiTi shape memory alloy by laser shock peening and post-deformation annealing
Keywords: آلیاژهای حافظه شکل (SMAs); Laser shock peening (LSP); Post deformation annealing; Shape memory alloys (SMAs); Amorphization; Nanocrystallization;
Quantitative three-dimensional analysis of Ni4Ti3 precipitate morphology and distribution in polycrystalline Ni-Ti
Keywords: آلیاژهای حافظه شکل (SMAs); Precipitation; Focused ion beam (FIB); Scanning electron microscopy (SEM); Three-dimensional reconstruction; Shape memory alloys (SMAs);
Macroscopic versus local strain rates during tensile testing of pseudoelastic NiTi
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Interfaces; Localization; Strain rate
Temperature profiles in a Ti–45Ni–5Cu (at%) shape memory alloy developed by the Joule heating
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Functionally graded materials (FGMs); Martensitic transformation; Thermomechanical processing; Numerical analysis
Analytical modeling of stress-induced martensitic transformation in the crack tip region of nickel–titanium alloys
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Fracture; Martensitic phase transformation; Analytical methods
In-situ studies of stress- and magnetic-field-induced phase transformation in a polymer-bonded Ni-Co-Mn-In composite
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); X-ray diffraction (XRD); Phase transformation; Magnetic-field-induced strain;
Experimental and microstructural characterization of simultaneous creep, plasticity and phase transformation in Ti50Pd40Ni10Ti50Pd40Ni10 high-temperature shape memory alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Creep test; Shape memory alloys (SMAs); Martensitic phase transformation; Transmission electron microscopy (TEM); Viscoplasticity
Structural analysis of a new precipitate phase in high-temperature TiNiPt shape memory alloys
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Precipitation; Crystal structure; High-angle annular dark field (HAADF); Ab initio electron theory
Phase quantification during pseudoelastic cycling of Cu–13.1Al–4.0Ni (wt.%) single-crystal shape memory alloys using neutron diffraction
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Neutron diffraction; Phase transformations; Cyclic loading; Phase fronts
Experiment and theoretical prediction of martensitic transformation crystallography in a Ni–Mn–Ga ferromagnetic shape memory alloy
Keywords: آلیاژهای حافظه شکل (SMAs); Shape memory alloys (SMAs); Martensitic phase transformation; Twin variant selection; Electron backscattered diffraction (EBSD); Microstructure
Stress generation by shape memory alloy wires embedded in polymer composites
Keywords: آلیاژهای حافظه شکل (SMAs); Polymer matrix composites; Raman spectroscopy; Shape memory alloys (SMAs)