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  • Superelasticity - an overview | ScienceDirect Topics
    Superelasticity is the shape memory property that has been most explored for commercial use Its application is guided by the ability of SMAs to sustain large elastic strains at certain temperatures during use
  • Pseudoelasticity - Wikipedia
    In materials science, pseudoelasticity, sometimes called superelasticity, is an elastic (reversible) response to an applied stress, caused by a phase transformation between the austenitic and martensitic phases of a crystal It is exhibited in shape-memory alloys
  • Superelastic and Superplastic Alloys - Problem Set 2
    Superelasticity is an elastic response to a relatively high stress induced by a phase transformation between the austenitic and martensitic phases of a crystal
  • Superelasticity and Shape Memory Alloys (all content) - DoITPoMS
    These alloys are commonly known as Shape Memory Alloys (SMAs) The most common of these alloys is an equi-atomic alloy of Ni and Ti, known as ‘Nitinol’, although both Ni-rich and Ti-rich alloys are also used Other examples include Cu-Zn or ternary alloys like Ni-Cu-Ti or Ni-Hf-Ti
  • Superelasticity and the Shape Memory Effect | SpringerLink
    Definition Superelasticity, or pseudoelasticity, is a unique property of shape memory alloys (SMAs), wherein up to 13% deformation strain can be sustained and the material can recover its original shape after removing the stress
  • Superelasticity – Knowledge and References – Taylor Francis
    Superelasticity refers to the ability of an alloy, specifically a shape memory alloy (SMA), to experience high levels of inelastic strain and then recover its original shape once the load is removed This term is used because of the alloy's large elastic response to stress
  • Superelasticity Uncovered - numberanalytics. com
    Superelasticity is a nonlinear elastic behavior that allows materials to exhibit large reversible deformations, whereas elasticity refers to the ability of a material to return to its original shape after a small deformation
  • What is the difference between superelasticity and the shape memory . . .
    Really, superelasticity assume as an reversible response to stress, caused by a phase transformation in some materials, so-called SMA materials
  • Superelastic and Superplastic Alloys - MIT OpenCourseWare
    (a) Explain the physical basis of superelasticity (b) You are asked to quantify the Young’s elastic modulus of a shape memory alloy such as Ni-Ti Based on your understanding from the van Humbeeck review, how would you respond? (c) How, then, do you explain the values of E and G in his Table 1?
  • superelastic: Explore its Definition Usage | RedKiwi Words
    'Superelastic' means exhibiting greater elasticity than ordinary materials, able to stretch and deform without breaking and return to its original shape Examples include superelastic alloys and fibers, which are stronger and more durable than traditional elastic materials





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