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Lattice Defects Generated by Cyclic Thermomechanical Loading of Superelastic NiTi Wire by Ondřej Tyc; Luděk Heller; Petr Šittner is a Materials Science article available to read on EtoBox.

What is Lattice Defects Generated by Cyclic Thermomechanical Loading of Superelastic NiTi Wire about?

Cyclic instability of stress-strain-temperature functional responses of NiTi is presumably due to the plastic deformation accompanying martensitic transformation proceeding under external stress. In order to obtain systematic experimental evidence on this, we have performed series of cyclic thermomechanical loading tests (10 cycles) on superelastic NiTi wires with nanocrystalline microstructure, evaluated accumulated unrecovered strains and analysed permanent lattice defects created during the cycling by TEM. The accumulated unrecovered strains and density of lattice defects increased with increasing temperature and stress, at which the forward and/or reverse transformation proceeded. It did not correlate with the temperature and stress applied in the test as such. If the martensitic transformation proceeded at low stress (\100 MPa), the cyclic stress-strain-temperature responses of the wire were found to be almost stable (only marginal accumulated unrecovered strain and few isolated dislocation loops and segments were generated during the thermomechanical cycling). This was the case in thermal cycling at low stresses or in cyclic shape memory test. If the forward and/or reverse ma

Who reads Lattice Defects Generated by Cyclic Thermomechanical Loading of Superelastic NiTi Wire?

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Author
Ondřej Tyc; Luděk Heller; Petr Šittner
Publisher
Springer Science and Business Media LLC
Published
2021
Language
EN
Field
Materials Science (Physical Sciences)

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