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Erschienen in: Journal of Materials Engineering and Performance 4-5/2011

01.07.2011

Effects of Cyclic Loading on the Uniaxial Behavior of Nitinol

verfasst von: M. Schlun, A. Zipse, G. Dreher, N. Rebelo

Erschienen in: Journal of Materials Engineering and Performance | Ausgabe 4-5/2011

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Abstract

The widespread development and use of implants made from NiTi is accompanied by the publication of many NiTi material characterization studies. These publications have increased significantly the knowledge about the mechanical properties of NiTi. However, this knowledge also increased the complexity of the numerical simulation of NiTi implants or devices. This study is focused on the uniaxial behavior of NiTi tubing due to cyclic loading and had the goal to deliver both precise and application-oriented results. Single aspects of this study have already been published (Wagner in Ein Beitrag zur strukturellen und funktionalen Ermüdung von Drähten und Federn aus NiTi-Formgedaechtnislegierungen, Ph.D. Thesis, 2005; Eucken and Duerig in Acta Metall 37:2245-2252, 1989; Yawny et al. in Z Metallkd 96:608-618, 2005); however, there is no publication known that shows all the single effects combined in a “duty cycle case.” It was of particular importance to summarize the main effects of pre-strain and subsequent small or large strain amplitudes on the material properties. The phenomena observed were captured in an extended Abaqus® Nitinol material model, presented by Rebelo et al. (A Material Model for the Cyclic Behavior of Nitinol, SMST Extended Abstracts 2010). The cyclic tensile tests were performed using a video extensometer to obtain accurate strain measurement on small electro-polished dog-bone specimen that were incorporated into a stent framework so that standard manufacturing methods could be used for the fabrication. This study indicates that a prestrain beyond 6% strain alters the transformation plateaus and if the cyclic displacement amplitude is large enough, additional permanent deformations are observed, the lower plateau and most notably the upper plateau change. The changes to the upper plateau are very interesting in the sense that an additional stress plateau develops: its “start stress” is lowered thereby creating a new plateau up to the highest level of cyclic strain, followed by resuming the original plateau until full transformation. This study was conducted in the course of the work of a consortium of several stent manufacturers, SAFE Technology Limited and Dassault Systèmes Simulia Corp., dedicated to the development of fatigue laws suitable for life prediction of Nitinol devices.

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Literatur
1.
Zurück zum Zitat S. Eucken and T.W. Duerig, The effects of pseudoelastic prestraining on the tensile behavior and two-way shape memory effect in aged NiTi, Acta Metall., 1989, 37, p 2245–2252CrossRef S. Eucken and T.W. Duerig, The effects of pseudoelastic prestraining on the tensile behavior and two-way shape memory effect in aged NiTi, Acta Metall., 1989, 37, p 2245–2252CrossRef
2.
Zurück zum Zitat A. Yawny, M. Sade, and G. Eggeler, Pseudoelastic cycling of ultra-fine-grained NiTi shape-memory wires, Z. Metallkd., 2005, 96(6), p 608–618CrossRef A. Yawny, M. Sade, and G. Eggeler, Pseudoelastic cycling of ultra-fine-grained NiTi shape-memory wires, Z. Metallkd., 2005, 96(6), p 608–618CrossRef
3.
Zurück zum Zitat M.F.-X. Wagner, “Ein Beitrag zur strukturellen und funktionalen Ermüdung von Drähten und Federn aus NiTi-Formgedaechtnislegierungen” (in German), Ph.D. Thesis, Ruhr-University Bochum, Bochum University Press, 2005 M.F.-X. Wagner, “Ein Beitrag zur strukturellen und funktionalen Ermüdung von Drähten und Federn aus NiTi-Formgedaechtnislegierungen” (in German), Ph.D. Thesis, Ruhr-University Bochum, Bochum University Press, 2005
4.
Zurück zum Zitat N. Rebelo, A. Zipse, M. Schlun, and G. Dreher, A Material Model for the Cyclic Behavior of Nitinol, SMST Extended Abstracts 2010 N. Rebelo, A. Zipse, M. Schlun, and G. Dreher, A Material Model for the Cyclic Behavior of Nitinol, SMST Extended Abstracts 2010
Metadaten
Titel
Effects of Cyclic Loading on the Uniaxial Behavior of Nitinol
verfasst von
M. Schlun
A. Zipse
G. Dreher
N. Rebelo
Publikationsdatum
01.07.2011
Verlag
Springer US
Erschienen in
Journal of Materials Engineering and Performance / Ausgabe 4-5/2011
Print ISSN: 1059-9495
Elektronische ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-010-9790-2

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