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  1. Journal of Materials Engineering and Performance
  2. Journal of Materials Engineering and Performance : Volume 21
  3. Journal of Materials Engineering and Performance : Volume 21, Issue 12, December 2012
  4. Process Mechanics of Low Plasticity Burnishing of Nitinol Alloy
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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 22
Journal of Materials Engineering and Performance : Volume 21
Journal of Materials Engineering and Performance : Volume 21, Issue 12, December 2012
Editorial
Temperature Variation in NiTi Shape Memory Alloy During Cyclic Phase Transition
Martensitic Transformation and Shape Memory Effect of NiCoMnSn High Temperature Shape Memory Alloy
Differential Scanning Calorimetric (DSC) Analysis of Rotary Nickel-Titanium (NiTi) Endodontic File (RNEF)
Tailoring Selective Laser Melting Process Parameters for NiTi Implants
Superelastic Deformation in Polycrystalline Fe-Ni-Co-Ti-Cu Alloys
Phase Transformation and Magnetic Property of Ni-Mn-Ga Powders Prepared by Dry Ball Milling
Phase Transformation Behavior of Hot Isostatically Pressed NiTi-X (X = Ag, Nb, W) Alloys for Functional Engineering Applications
Effects of ECAP and Aging on Mechanical and Superelastic Behaviors of Ti-Mo-Based and Ti-25at.%Nb SMAs
Superelastic Porous NiTi with Adjustable Porosities Synthesized by Powder Metallurgical Method
Effect of Annealing and Cold Work on Mechanical Properties of Beta III Titanium
Effect of Aging Treatment on Superelasticity of a Ti$_{48.8}$Ni$_{50.8}$V$_{0.4}$ Alloy
Characterization of Inclusions in VIM/VAR NiTi Alloys
The Measurement of Total Inclusion Content in Nickel-Titanium Alloys
Mechanical Behavior of Shape Memory Alloys Under Complex Loading Conditions of Stress, Strain, and Temperature
Hot Deformation Behavior of NiTiHf Shape Memory Alloy Under Hot Compression Test
Hydrothermal Growth Mechanism of Controllable Hydrophilic Titanate Nanostructures on Medical NiTi Shape Memory Alloy
Process Mechanics of Low Plasticity Burnishing of Nitinol Alloy
Fracture of Polymer-Coated Nitinol During Gamma Sterilization
Wear Properties of Porous NiTi Orthopedic Shape Memory Alloy
Nitinol Fatigue Life for Variable Strain Amplitude Fatigue
Effect of Current Pulses on Fatigue of Thin NiTi Wires for Shape Memory Actuators
Irradiation-Assisted Stress-Corrosion Cracking of Nitinol During eBeam Sterilization
Continuous Rotary Motor Actuated by Multiple Segments of Shape Memory Alloy Wires
Preparation and Characterization of Nitinol Bone Staples for Cranio-Maxillofacial Surgery
A Methodology for the Development, Production, and Validation of R-Phase Actuators
Repeated Instant Self-healing Shape Memory Composites
Characteristics of TiNi Shape Memory Foils Fabricated by Double Cathodes Electrochemical Polishing
Study of Thermal Scanning Rates on Transformations of Ti-19Nb-9Zr (at.%) by Means of Differential Scanning Calorimetry Analysis
Torsional Properties of TiNi Shape Memory Alloy Tape for Rotary Actuator
Microstructure and Properties of Deformation Processed Polycrystalline Ni$_{47}$Ti$_{44}$Nb$_{9}$ Shape Memory Alloy
Investigation on Mechanical Properties of Deformation TiNi Thin Films
Comparative In Vitro Study of Ti-12V-9Sn Shape Memory Alloy with C.P. Ti and Ti-12V Alloy for Potential Biomedical Application
Reproducibility Study of NiTi Parts Made by Metal Injection Molding
Numerical and Experimental Characterizations of Damping Properties of SMAs Composite for Vibration Control Systems
Experimental Evaluation of a Device Prototype Based on Shape Memory Alloys for the Retrofit of Historical Buildings
Journal of Materials Engineering and Performance : Volume 21, Issue 11, November 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 10, October 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 9, September 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 8, August 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 7, July 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 6, June 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 5, May 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 4, April 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 3, March 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 2, February 2012
Journal of Materials Engineering and Performance : Volume 21, Issue 1, January 2012
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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Process Mechanics of Low Plasticity Burnishing of Nitinol Alloy

Content Provider Springer Nature Link
Author Fu, C. H. Guo, Y. B. McKinney, J. Wei, X. T.
Copyright Year 2012
Abstract Nitinol alloys have received considerable attention in biomedical and aerospace applications. Surface integrity of Nitinol devices by various manufacturing processes is crucial for their functionality. Low plasticity burnishing (LPB) is very promising to modify surface integrity due to its unique capability to adjust material properties down to the deep subsurface on the order of a few millimeters. Burnishing mechanics is essential to understand its effect on surface properties. The depth and width of burnished surface materials are characterized. A three-dimensional finite element simulation has been developed to incorporate the superelastic mechanical behavior of Nitinol. The simulation predictions are validated with the experimental results. The contact stresses, residual stresses, and strain profiles are investigated to better understand burnishing mechanics.
Starting Page 2607
Ending Page 2617
Page Count 11
File Format PDF
ISSN 10599495
Journal Journal of Materials Engineering and Performance
Volume Number 21
Issue Number 12
e-ISSN 15441024
Language English
Publisher Springer US
Publisher Date 2012-08-07
Publisher Place Boston
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword burnishing finite element analysis medical device nitinol process mechanics Tribology, Corrosion and Coatings Engineering Design Quality Control, Reliability, Safety and Risk Characterization and Evaluation of Materials
Content Type Text
Resource Type Article
Subject Mechanics of Materials Materials Science Mechanical Engineering
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