The finite element (FE) implementation of a hyperbolic sine unified cyclic viscoplasticity model is presented. The hyperbolic sine flow rule facilitates the identification of strain-rate independent material parameters for high temperature applications. This is important for the thermo-mechanical fatigue of power plants where a significant stress range is experienced during operational cycles and at stress concentration features, such as welds and branched connections. The material model is successfully applied to the characterisation of the high temperature low cycle fatigue behavior of a service-aged P91 material, including isotropic (cyclic) softening and nonlinear kinematic hardening effects, across a range of temperatures and strain-rates.
Skip Nav Destination
College of Engineering and Informatics,
NUI Galway,
Materials, and Manufacturing Engineering,
University of Nottingham,
Aeronautical and Biomedical Engineering,
Materials and Surface Science Institute,
University of Limerick,
College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway,
College of Engineering and Informatics,
NUI Galway,
Article navigation
April 2014
Research-Article
A Unified Viscoplastic Model for High Temperature Low Cycle Fatigue of Service-Aged P91 Steel
R. A. Barrett,
R. A. Barrett
1
Mechanical Engineering,
College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway, Ireland,
e-mail: r.barrett2@nuigalway.ie
College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway, Ireland,
e-mail: r.barrett2@nuigalway.ie
1Corresponding author.
Search for other works by this author on:
T. P. Farragher,
College of Engineering and Informatics,
NUI Galway,
T. P. Farragher
Mechanical Engineering
,College of Engineering and Informatics,
NUI Galway,
Ireland
;Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway, Ireland
Marine and Energy Research,
NUI Galway, Ireland
Search for other works by this author on:
C. J. Hyde,
Materials, and Manufacturing Engineering,
University of Nottingham,
C. J. Hyde
Department of Mechanical
,Materials, and Manufacturing Engineering,
University of Nottingham,
Nottingham NG7 2RD
, UK
Search for other works by this author on:
N. P. O'Dowd,
Aeronautical and Biomedical Engineering,
Materials and Surface Science Institute,
University of Limerick,
N. P. O'Dowd
Department of Mechanical
,Aeronautical and Biomedical Engineering,
Materials and Surface Science Institute,
University of Limerick,
Ireland
Search for other works by this author on:
P. E. O'Donoghue,
College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway,
P. E. O'Donoghue
Civil Engineering
,College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway,
Ireland
Search for other works by this author on:
S. B. Leen
College of Engineering and Informatics,
NUI Galway,
S. B. Leen
Mechanical Engineering
,College of Engineering and Informatics,
NUI Galway,
Ireland
;Ryan Institute for Environmental,
Marine, and Energy Research,
NUI Galway, Ireland
Marine, and Energy Research,
NUI Galway, Ireland
Search for other works by this author on:
R. A. Barrett
Mechanical Engineering,
College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway, Ireland,
e-mail: r.barrett2@nuigalway.ie
College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway, Ireland,
e-mail: r.barrett2@nuigalway.ie
T. P. Farragher
Mechanical Engineering
,College of Engineering and Informatics,
NUI Galway,
Ireland
;Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway, Ireland
Marine and Energy Research,
NUI Galway, Ireland
C. J. Hyde
Department of Mechanical
,Materials, and Manufacturing Engineering,
University of Nottingham,
Nottingham NG7 2RD
, UK
N. P. O'Dowd
Department of Mechanical
,Aeronautical and Biomedical Engineering,
Materials and Surface Science Institute,
University of Limerick,
Ireland
P. E. O'Donoghue
Civil Engineering
,College of Engineering and Informatics,
NUI Galway, Ireland;
Ryan Institute for Environmental,
Marine and Energy Research,
NUI Galway,
Ireland
S. B. Leen
Mechanical Engineering
,College of Engineering and Informatics,
NUI Galway,
Ireland
;Ryan Institute for Environmental,
Marine, and Energy Research,
NUI Galway, Ireland
Marine, and Energy Research,
NUI Galway, Ireland
1Corresponding author.
Contributed by the Pressure Vessel and Piping Division of ASME for publication in the JOURNAL OF PRESSURE VESSEL TECHNOLOGY. Manuscript received May 28, 2013; final manuscript received August 25, 2013; published online January 7, 2014. Assoc. Editor: Wolf Reinhardt.
J. Pressure Vessel Technol. Apr 2014, 136(2): 021402 (8 pages)
Published Online: January 7, 2014
Article history
Received:
May 28, 2013
Revision Received:
August 25, 2013
Citation
Barrett, R. A., Farragher, T. P., Hyde, C. J., O'Dowd, N. P., O'Donoghue, P. E., and Leen, S. B. (January 7, 2014). "A Unified Viscoplastic Model for High Temperature Low Cycle Fatigue of Service-Aged P91 Steel." ASME. J. Pressure Vessel Technol. April 2014; 136(2): 021402. https://doi.org/10.1115/1.4025618
Download citation file:
Get Email Alerts
Failure Analysis of the Threaded Connection of the Top Inlet Pipe for the High-pressure Polyethylene Reactor
J. Pressure Vessel Technol
Performance Variation of Transient Propulsion System Induced by Machining Errors in a Variable Combustion Chamber
J. Pressure Vessel Technol (August 2025)
Practical Method for Online Leak Sealing of Valve Bonnet Using Compound Injection
J. Pressure Vessel Technol (August 2025)
Related Articles
Uniaxial Ratchetting of 316FR Steel at Room Temperature— Part II: Constitutive Modeling and Simulation
J. Eng. Mater. Technol (January,2000)
Uniaxial Ratchetting of 316FR Steel at Room Temperature— Part I: Experiments
J. Eng. Mater. Technol (January,2000)
Constitutive Modeling of Inelastic Solids for Plastic Flow Processes Under Cyclic Dynamic Loadings
J. Eng. Mater. Technol (April,1999)
High-Temperature Low-Cycle Fatigue Behavior of MarBN at 600 °C
J. Pressure Vessel Technol (August,2016)
Related Chapters
Combined Cycle Power Plant
Energy and Power Generation Handbook: Established and Emerging Technologies
Introduction and Definitions
Handbook on Stiffness & Damping in Mechanical Design
Basic Concepts
Design & Analysis of ASME Boiler and Pressure Vessel Components in the Creep Range