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  1. Journal of Materials Engineering and Performance
  2. Journal of Materials Engineering and Performance : Volume 23
  3. Journal of Materials Engineering and Performance : Volume 23, Issue 7, July 2014
  4. Low Cycle Fatigue Evaluation of NiTi SESMA Thin Wires
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Journal of Materials Engineering and Performance : Volume 26
Journal of Materials Engineering and Performance : Volume 25
Journal of Materials Engineering and Performance : Volume 24
Journal of Materials Engineering and Performance : Volume 23
Journal of Materials Engineering and Performance : Volume 23, Issue 12, December 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 11, November 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 10, October 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 9, September 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 8, August 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 7, July 2014
Editorial: SMST 2013
Young’s Modulus of Austenite and Martensite Phases in Superelastic NiTi Wires
An Examination of the Mechanical Behavior of Shape Memory Nitinol Wires at Various Temperatures
Functional Characterization of a Novel Shape Memory Alloy
Optimization of Shape-Memory Effect in Fe-Mn-Si-Cr-Re Shape-Memory Alloys
In Situ Optical Microscope Study of the Thermally Induced Displacive Transformations in Cualni-Based Shape-Memory Alloys
Accumulation of Residual Strain in TiNi Alloy During Thermal Cycling
Work Production and Variation in Shape Memory Effects during Thermal Cycling of Equiatomic TiNi Alloy
Reversible Characteristics and Cycling Effects of the ε ↔ γ Martensitic Transformations in Fe-Mn-Cr Twip/Trip Steels
Functional Response of NiTi Elements for Smart Micro-actuation Applications
Improved Shape Memory Characteristics of Fe-14Mn-6Si-9Cr-5Ni Alloy Via Mechanical Alloying
Microstructure, Phase Transformations, and Properties of Hot-Extruded Ni-Rich NiTi Shape Memory Alloy
Influence of Chemical Composition and Melting Process on Hot Rolling of NiTiHf Shape Memory Alloy
Nonequiatomic NiTi Alloy Produced by Self Propagating High Temperature Synthesis
Hot Workability of CuZr-Based Shape Memory Alloys for Potential High-Temperature Applications
Mechanical and Functional Properties of Nickel Titanium Adhesively Bonded Joints
Shape Memory Effects in TiNi-based Alloys Subjected to Electroplastic Rolling
Novel High-Speed High Pressure Torsion Technology for Obtaining Fe-Mn-Si-Cr Shape Memory Alloy Active Elements
Effects of Loading and Constraining Conditions on the Thermomechanical Fatigue Life of NiTi Shape Memory Wires
NiTi Alloy Negator Springs for Long-Stroke Constant-Force Shape Memory Actuators: Modeling, Simulation and Testing
A Numerical/Experimental Study of Nitinol Actuator Springs
Low Cycle Fatigue Evaluation of NiTi SESMA Thin Wires
Comparison of the Fatigue Performance of Commercially Produced Nitinol Samples versus Sputter-Deposited Nitinol
In Situ Phase Evolution of Ni/Ti Reactive Multilayers
Analysis of New Nitinol Ingot Qualities
The Influence of Microcleanliness on the Fatigue Performance of Nitinol
Superelastic Orthopedic Implant Coatings
Improvement of Superelastic Performance of Ti-Nb Binary Alloys for Biomedical Applications
XRD Study of NiTi Endodontic Files Using Synchrotron Radiation
Generation of NiTi Nanoparticles by Femtosecond Laser Ablation in Liquid
Electrical Pulse Shape Setting of Thin Ni$_{49}$Ti$_{51}$ Wires for Shape Memory Actuators
Non-Conventional Techniques for the Study of Phase Transitions in NiTi-Based Alloys
NiTiCu Shape Memory Alloy Characterization Through Microhardness Tests
Development of Stress-Induced Martensitic Transformation in TiNi Shape Memory Alloy
A Comparison of Zero Mean Strain Rotating Beam Fatigue Test Methods for Nitinol Wire
Laser Cut Nitinol Tubing Fatigue Coupon: Design, Testing, and Endurance Limit
Influence of Surface Morphology on the Torsion Fracture of NiTi Endodontic Instruments
Influence of Microstructure on the Performance of Nitinol: A Computational Analysis
Tailored One-Way and Two-Way Shape Memory Capabilities of Poly(ε-Caprolactone)-Based Systems for Biomedical Applications
Mechanical and Infrared Thermography Analysis of Shape Memory Polyurethane
Effect of Different Shape-Memory Processing Methods on the Thermomechanical Cyclic Properties of a Shape-Memory Polyurethane
Influence of Holding Time on Shape Recovery in a Polyurethane Shape-Memory Polymer
Modeling and Simulation of SMA Medical Devices Undergoing complex Thermo-mechanical Loadings
Simulations of Self-Expanding Braided Stent Using Macroscopic Model of NiTi Shape Memory Alloys Covering R-Phase
Simulations of Mechanical Response of Superelastic NiTi Helical Spring and its Relation to Fatigue Resistance
Effect of Stent Radial Force on Stress Pattern After Deployment: A Finite Element Study
Computational Study of Axial Fatigue for Peripheral Nitinol Stents
Damping of Selective-Laser-Melted NiTi for Medical Implants
Effect of Surface Alloying by Silicon on the Corrosion Resistance and Biocompatibility of the Binary NiTi
Corrosion Behavior of Ti-55Ni-1.2Co High Stiffness Shape Memory Alloys
Effect of Inclusion Size and Distribution on the Corrosion Behavior of Medical-Device Grade Nitinol Tubing
Atomic Layer-Deposited Al$_{2}$O$_{3}$ Coatings on NiTi Alloy
Physical Simulation of the Random Failure of Implanted Braided NiTi Stents
Corrosion of NiTi Wires with Cracked Oxide Layer
Loading Mode and Environment Effects on Surface Profile Characteristics of Martensite Plates in Cu-Based SMAs
Electrochemical Behavior of Novel Superelastic Biomedical Alloys in Simulated Physiological Media Under Cyclic Load
Characterization of Polylactide Layer Deposited on Ni-Ti Shape Memory Alloy
On the Potentials of Shape Memory Alloy Valves
Characterization of NiTi Shape Memory Damping Elements designed for Automotive Safety Systems
REACT: Resettable Hold Down and Release Actuator for Space Applications
New Pin Puller Based on SMA Technology for Space Applications
Simulation of Payload Vibration Protection by Shape Memory Alloy Parts
Stiffness and Confinement Ratios of SMA Wire Jackets for Confining Concrete
Optimization of Fe-15Mn-5Si-9Cr-5Ni Shape Memory Alloy for Pipe and Shaft Couplings
Journal of Materials Engineering and Performance : Volume 23, Issue 6, June 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 5, May 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 4, April 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 3, March 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 2, February 2014
Journal of Materials Engineering and Performance : Volume 23, Issue 1, January 2014
Journal of Materials Engineering and Performance : Volume 22
Journal of Materials Engineering and Performance : Volume 21
Journal of Materials Engineering and Performance : Volume 20
Journal of Materials Engineering and Performance : Volume 19
Journal of Materials Engineering and Performance : Volume 18
Journal of Materials Engineering and Performance : Volume 17
Journal of Materials Engineering and Performance : Volume 16
Journal of Materials Engineering and Performance : Volume 15
Journal of Materials Engineering and Performance : Volume 14
Journal of Materials Engineering and Performance : Volume 13
Journal of Materials Engineering and Performance : Volume 12
Journal of Materials Engineering and Performance : Volume 11
Journal of Materials Engineering and Performance : Volume 10
Journal of Materials Engineering and Performance : Volume 9
Journal of Materials Engineering and Performance : Volume 8
Journal of Materials Engineering and Performance : Volume 7
Journal of Materials Engineering and Performance : Volume 6

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Low Cycle Fatigue Evaluation of NiTi SESMA Thin Wires

Content Provider Springer Nature Link
Author Sateesh, V. L. Senthilkumar, P. Dayananda, G. N.
Copyright Year 2014
Abstract This paper presents experimental studies on low cycle fatigue (LCF) life of super-elastic shape memory alloy (SESMA) wires. The effect of frequency of the loading and amplitude of the strain on the fatigue life has been studied individually. Various loading frequencies have been considered to study the effect of frequency, by keeping the amplitude constant. From the experimental data, it was found that the LCF life of the SESMA reduces with increase in the frequency. The effect of amplitude on the LCF life of SESMA has also been studied, and it was found that the SESMA cycled at lower net strain has more fatigue life than the one cycled at higher net strain. Further, the plastic strain accumulation is also more in the samples tested at the higher net strain loadings. The modulus of austenite is found to be by and large independent of the frequency and amplitude of the loading. Further, martensitic unloading modulus is same for all the minimum strain amplitudes.
Starting Page 2429
Ending Page 2436
Page Count 8
File Format PDF
ISSN 10599495
Journal Journal of Materials Engineering and Performance
Volume Number 23
Issue Number 7
e-ISSN 15441024
Language English
Publisher Springer US
Publisher Date 2014-05-24
Publisher Place Boston
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword low cycle fatigue testing shape memory alloys stress and strain Characterization and Evaluation of Materials Tribology, Corrosion and Coatings Quality Control, Reliability, Safety and Risk Engineering Design
Content Type Text
Resource Type Article
Subject Mechanics of Materials Materials Science Mechanical Engineering
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