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Design and fabrication of a bending rotation fatigue test rig for in situ electrochemical analysis during fatigue testing of NiTi shape memory alloy wires
, Jenni Kristin Zglinski, Matthias Frotscher, Gunther Eggeler
Published in
2013
PMID: 23556847
Volume: 84
   
Issue: 3
Abstract
The current investigation proposes a novel method for simultaneous assessment of the electrochemical and structural fatigue properties of nickel-titanium shape memory alloy (NiTi SMA) wires. The design and layout of an in situ electrochemical cell in a custom-made bending rotation fatigue (BRF) test rig is presented. This newly designed test rig allows performing a wide spectrum of experiments for studying the influence of fatigue on corrosion and vice versa. This can be achieved by performing ex situ andor in situ measurements. The versatility of the combined electrochemicalmechanical test rig is demonstrated by studying the electrochemical behavior of NiTi SMA wires in 0.9 NaCl electrolyte under load. The ex situ measurements allow addressing various issues, for example, the influence of pre-fatigue on the localized corrosion resistance, or the influence of hydrogen on fatigue life. Ex situ experiments showed that a pre-fatigued wire is more susceptible to localized corrosion. The synergetic effect can be concluded from the polarization studies and specifically from an in situ study of the open circuit potential (OCP) transients, which sensitively react to the elementary repassivation events related to the local failure of the oxide layer. It can also be used as an indicator for identifying the onset of the fatigue failure. © 2013 American Institute of Physics.
About the journal
JournalReview of Scientific Instruments
ISSN00346748
Open AccessNo
Concepts (44)
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    Electrochemical analysis
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    Electrochemical behaviors
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    IN-SITU MEASUREMENT
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    Localized corrosion
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    LOCALIZED CORROSION RESISTANCES
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    NICKEL-TITANIUM SHAPE MEMORY ALLOYS
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    NITI SHAPE MEMORY ALLOYS
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    Open circuit potential
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    Aluminum corrosion
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    Corrosion resistance
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    Experiments
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    Fatigue of materials
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    Fatigue testing
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    Wire
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    Biomaterial
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    Dental alloy
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    Nickel
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    Titanium
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    TITANIUM NICKELIDE
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    Chemistry
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    Devices
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    Electrochemistry
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    Equipment design
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    Materials testing
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    Mechanical stress
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    ORTHODONTIC WIRE
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    ORTHODONTICS
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    Potentiometry
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    Procedures
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    Scanning electron microscopy
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    Tensile strength
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    Theoretical model
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    Article
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    Equipment
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    Methodology
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    Biocompatible materials
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    Dental alloys
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    Microscopy, electron, scanning
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    Models, theoretical
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    ORTHODONTIC WIRES
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    ORTHODONTICS
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    Stress, mechanical
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    ORTHODONTIC WIRES
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    ORTHODONTICS