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The higher temperature shape is the plastic's "permanent" form, which it assumes after it's heated.
The TiPdNi alloys are promising high temperature shape memory alloys.
The microstructure of high temperature shape memory alloys of the Ru-Ta and Ru-Nb family are investigated in detail.
A new precipitate phase named P-phase has recently been identified in (Ni,Pt Ti high temperature shape memory alloys.
The application potential for such shape memory ceramics has spurred in-depth exploration of the martensitic transformation crystallography and high temperature shape memory effect.
The present study deals with transformation behaviour and thermal stability of Ni24.7Ti50.3Pd25.0 (at.%) high temperature shape memory alloy, in cast and homogenized condition.
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The results revealed morphological changes in the materials during a low temperature shape-memory cycle.
After that, a material like nitinol (pronounced NIGHT-ih-NOL) will "remember" the higher-temperature shape, and revert to it, when heated past its transition temperature.
High-temperature shape memory alloys are attractive for efficient solid state actuation.
CoNiGa alloys have received considerable interest due to their high-temperature shape memory properties.
Several alloy systems can be selected for high-temperature shape memory alloys (HTSMA) with stable transformation temperatures above 390 K.
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