Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study

The influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical specimens with a diameter of 4 mm and a gage length of 12.5 mm were tested under uniaxial cyclic loading with control crosshead displacement at a temperature of 0°C. The dependences of the stress and st...

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Main Authors: Iasnii Volodymyr, Yasniy Petro
Format: Article
Language:English
Published: Sciendo 2019-06-01
Series:Acta Mechanica et Automatica
Subjects:
Online Access:https://doi.org/10.2478/ama-2019-0013
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spelling doaj-7252a3c71b054f6d99c7e263394b44642021-09-06T19:41:06ZengSciendoActa Mechanica et Automatica 2300-53192019-06-011329510010.2478/ama-2019-0013ama-2019-0013Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental StudyIasnii Volodymyr0Yasniy Petro1Department of Structural Mechanics, Ternopil Ivan Puluj National Technical University, Ruska str. 56, 46001Ternopil, UkraineDepartment of Structural Mechanics, Ternopil Ivan Puluj National Technical University, Ruska str. 56, 46001Ternopil, UkraineThe influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical specimens with a diameter of 4 mm and a gage length of 12.5 mm were tested under uniaxial cyclic loading with control crosshead displacement at a temperature of 0°C. The dependences of the stress and strain range as well as dissipation energy on the number of loading cycles at different initial stress range were analysed. During the first 10 loading cycles, a rapid decrease in the strain range and energy dissipation was observed. Dissipation energy was invariant to the loading cycles’ number at N > 20 cycles and to the stress range that did not exceed the martensite finish stress level, was within the same scatter band and can be described by the single dependence. With the stress range growth at N < 20 cycles from 509 to 740 MPa, the value of dissipation energy increases and that of relative dissipation energy decreases. Loss coefficient, which characterises material damping ability, significantly decreases during the first 10 loading cycles and remains practically unchanged up to the failure of the specimens. At the stabilisation area, the loss coefficient is almost non-sensitive towards the stress range.https://doi.org/10.2478/ama-2019-0013pseudoelastic alloyfunctional propertiesdissipation energystrain rangestress range
collection DOAJ
language English
format Article
sources DOAJ
author Iasnii Volodymyr
Yasniy Petro
spellingShingle Iasnii Volodymyr
Yasniy Petro
Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study
Acta Mechanica et Automatica
pseudoelastic alloy
functional properties
dissipation energy
strain range
stress range
author_facet Iasnii Volodymyr
Yasniy Petro
author_sort Iasnii Volodymyr
title Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study
title_short Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study
title_full Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study
title_fullStr Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study
title_full_unstemmed Degradation of Functional Properties of Pseudoelastic NiTi Alloy Under Cyclic Loading: An Experimental Study
title_sort degradation of functional properties of pseudoelastic niti alloy under cyclic loading: an experimental study
publisher Sciendo
series Acta Mechanica et Automatica
issn 2300-5319
publishDate 2019-06-01
description The influence of the cyclic loading on the functional properties of NiTi was studied. Cylindrical specimens with a diameter of 4 mm and a gage length of 12.5 mm were tested under uniaxial cyclic loading with control crosshead displacement at a temperature of 0°C. The dependences of the stress and strain range as well as dissipation energy on the number of loading cycles at different initial stress range were analysed. During the first 10 loading cycles, a rapid decrease in the strain range and energy dissipation was observed. Dissipation energy was invariant to the loading cycles’ number at N > 20 cycles and to the stress range that did not exceed the martensite finish stress level, was within the same scatter band and can be described by the single dependence. With the stress range growth at N < 20 cycles from 509 to 740 MPa, the value of dissipation energy increases and that of relative dissipation energy decreases. Loss coefficient, which characterises material damping ability, significantly decreases during the first 10 loading cycles and remains practically unchanged up to the failure of the specimens. At the stabilisation area, the loss coefficient is almost non-sensitive towards the stress range.
topic pseudoelastic alloy
functional properties
dissipation energy
strain range
stress range
url https://doi.org/10.2478/ama-2019-0013
work_keys_str_mv AT iasniivolodymyr degradationoffunctionalpropertiesofpseudoelasticnitialloyundercyclicloadinganexperimentalstudy
AT yasniypetro degradationoffunctionalpropertiesofpseudoelasticnitialloyundercyclicloadinganexperimentalstudy
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