Buch, Englisch, 210 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 300 g
Buch, Englisch, 210 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 300 g
ISBN: 978-3-908158-25-7
Verlag: Trans Tech Publications
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Weitere Infos & Material
Recent Developments of Magnetic SMATexture and Microstructure Studies on Films of Ni-Mn-Ga Produced by R. F. Sputtering and Pulsed Laser DepositionHigh Energy Milling and Hot Extrusion of Equiatomic NiTi Shape Memory AlloyMagnetic Properties and Microstructures of Rapidly Solidified FePd Alloy RibbonsInfluence of Substrate Temperature on Texture for Deposited TiNi FilmsSurfactant Modified Nickel-Manganese-Gallium Powder and Silicone CompositesThermomechanical Modelling and Experimental Testing of a Shape Memory Alloy Hybrid Composite Plate
In Situ Experimental Methods for Characterization of Deformation Processes in SMAsEffect of the Loading History on Shape Memory Alloy Transformation TemperaturesElemental Interfaces and Displacive Phase TransformationsTexture Development in Ni-Ti Thin FilmsTwo-Way Memory Effect in NiTi Shape Memory AlloysShape Recovery and e - ? Transformation in Fe29Mn7Si5Cr SMAInfluence of Thermomechanical Treatment on Transformation Temperatures of Cu-Al-Ni Shape Memory AlloysPseudoelasticity of Cu-13.8Al-Ni Alloys Containing V and NbDynamic and Static Displacements of Atoms in B2-Phase of TiNi AlloyShape Memory Behavior in Some (Ti,Zr,Hf)50(Ni,Cu)50 Alloys Elaborated by Glass DevitrificationEngineering Aspects of Shape Memory Film Actuators and SensorsTransformation/Deformation Behavior and its Constitutive Equation for Ti-Ni-Cu Shape Memory AlloyEffect of Micro-Voids on Plasticity in NiTi-AlloysExperimental Characterization of NiTi SMAs Thermomechanical Behaviour Using Temperature and Strain Full-Field MeasurementsThermomechanical Characterization of Shape Memory Alloy Tubular Composite StructuresFunctional Properties of Ti-Ni-Based Shape Memory AlloysOn Functional Behavior of Strain-Aged Ti-Ni AlloySMA Fatigue in Civil Engineering Applications Control Characteristics of Shape Memory Alloy Actuator Using Resistance Feedback Control MethodGeneration of Smart Structures on the Basis of In Situ Configuration of Shape Memory AlloysSuperelastic NiTi Thin Films for Medical ApplicationsSmartflex NiTi Wires for Shape Memory Actuators