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Topology is concerned in particular with the properties of shape that are preserved when an object is squeezed, stretched and pummelled, but not torn.
Mapmakers have to choose a projection of the globe that approximates the basic properties of shape, size, direction, distance and scale.
We propose a Ginzburg Landau theory for the elastic properties of shape memory polycrystals.
In addition, the properties of shape fixity and shape recovery ratio of SMP were considered in detail.
Martensitic transformations (MTs) are the key phenomena responsible for the remarkable properties of Shape Memory Alloys (SMAs).
The coupled system is used to study domain morphology and mechanical properties of shape memory alloys in different temperature regimes.
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Vibrational properties of shape-memory alloys.
Experimental results show that material component and loading modes may affect the properties of shape-memory alloys (SMAs) markedly.
Objectives to describe the physical properties of shape-memory alloys and the surgical, scientific and commercial applications of nitinol, in particular.
The paper addresses two main applications of PIII, namely oxidation protection of gamma-titanium aluminides (γ-TiAl), and modification of the surface properties of shape-memory superelastic nickel titanium (NiTi) alloys.
Topology is concerned with the intrinsic properties of shapes of spaces.
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