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Titlebook: Advances in Shape Memory Materials; In Commemoration of Qingping Sun,Ryosuke Matsui,Elżbieta A. Pieczyska Book 2017 Springer International

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Lecture Notes in Computer Scienceo various stages of the SMP deformation, including inhomogeneous temperature distribution related to the strain localization, were presented. The SMA and SMP thermomechanical behavior depending on the strain rate was discussed.
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https://doi.org/10.1007/978-3-030-45096-0ine NiTi with average grain size of 10–100 nm are obtained by annealing and subsequent water quenching. It’s shown that as the grain size decreases in the nano region (below 100 nm), hardness of the nanocrystalline NiTi consistently increase but the change of modulus is non-monotonic with a minimum value at around 60 nm.
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Lecture Notes in Computer Sciencee, compressive, and simple torsional conditions below 135 °C. These critical stresses of this material reverse each other above 135 °C. Therefore the deformation below 135 °C is more suitable for utilizing the shape memory effect or the recovery stress and the loading above this temperature can easily realize the plastic working of this material.
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A Review of Shape Memory Polymers Thermomechanical Modelling: Analysis in the Frequency Domain,lysis of the relaxation problem is also investigated.... A dynamic mechanical analysis (DMA) is used to determine the evolution of viscoelastic properties as a function of the temperature and loading frequency.
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Simultaneous Measurement of Continuum Strain Field and Intermittent Martensite Band Nucleation in Sermittent martensite band nucleation was measured using Stress Drop Analysis in a stress-strain curve. Comparison of the results reveals a phenomenological correlation. This method is extremely useful for investigation of deformation mechanisms in single-crystal shape memory alloys.
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Thermomechanical Coupling and Localization Effects Examined in Shape Memory Alloys and Polymers by o various stages of the SMP deformation, including inhomogeneous temperature distribution related to the strain localization, were presented. The SMA and SMP thermomechanical behavior depending on the strain rate was discussed.
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