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The use of creep continuum damage mechanics to predict damage evolution and failure in welded vessels
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Continuum damage mechanics modelling of high temperature deformation and failure in a pipe weldment
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F.R. Hall D.R. Hayhurst Continuum damage mechanics modelling of high temperature deformation and failure in a pipe weldment Proc R Soc Lond A433 1991 383-403
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The ridged uni-axial testpiece: Creep and fracture predictions using large-displacement analyses
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B.F. Dyson D.R. Hayhurst J. Lin The ridged uni-axial testpiece: Creep and fracture predictions using large-displacement analyses Proc R Soc Lond A452 1996 655-676
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Creep constitutive equations for a 0.5Cr-0.5Mo-O.25V ferritic steel in the temperature range 600°C-675°C
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I.J. Perrin D.R. Hayhurst Creep constitutive equations for a 0.5Cr-0.5Mo-O.25V ferritic steel in the temperature range 600 °C-675 °C J Strain Anal 31 1996 299-314
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10044283139
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CDM predictions of creep damage initiation and growth in ferritic steel weldments in a medium bore branched pipe under constant pressure at 590 °C using a 4-material weld model
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UMIST, Internal Research Report No: DMM.03.04
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Mustata R Hayhurst RJ Vakili-Tahami F Hayhurst DR CDM predictions of creep damage initiation and growth in ferritic steel weldments in a medium bore branched pipe under constant pressure at 590 °C using a 4-material weld model, UMIST, Internal Research Report No: DMM.03.04; 2003
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CDM Predictions of creep damage initiation and growth in ferritic steel weldments in a medium bore branched pipe under constant pressure at 590 °C using a 5-material weld model
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UMIST, Internal Research Report No. DMM.03.05
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Hayhurst DR Hayhurst RJ Vakili-Tahami F. CDM Predictions of creep damage initiation and growth in ferritic steel weldments in a medium bore branched pipe under constant pressure at 590 °C using a 5-material weld model, UMIST, Internal Research Report No. DMM.03.05; 2003
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Creep constitutive equations for 0.5Cr 0.5Mo 0.25V ferritic steels in the temperature range 565-675 °C
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UMIST Research Report No: DMM.01.06 (Revised)
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Mustata R Hayhurst DR. Creep constitutive equations for 0.5Cr 0.5Mo 0.25V ferritic steels in the temperature range 565-675 °C, UMIST Research Report No: DMM.01.06 (Revised); 2001
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10044250099
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Thickness and multi-axial stress rupture criteria of the type IV component of a ferritic steel weld
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R.J. Hayhurst F. Vakili-Tahami R. Mustata D.R. Hayhurst Thickness and multi-axial stress rupture criteria of the type IV component of a ferritic steel weld J Strain Anal 2004 in press
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0013199083
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Collaborative programme on the correlation of test data for high temperature design of welded steam pipes
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Presentation and analysis of the material data. Note No. RD/L/2101N81, March, CEGB Laboratory
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Cane BJ. Collaborative programme on the correlation of test data for high temperature design of welded steam pipes. Presentation and analysis of the material data. Note No. RD/L/2101N81, March, CEGB Laboratory; 1981
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10944232741
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Re: Provision of parent and weld material data-fits for 0.5Cr 0.5Mo 0.25V parent ferritic and 2.25Cr 1M weld materials
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Private communication. Barnwood, Gloucestershire
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Spindler M. Private communication. Re: Provision of parent and weld material data-fits for 0.5Cr 0.5Mo 0.25V parent ferritic and 2.25Cr 1M weld materials. British Energy, Barnwood, Gloucestershire; 2001
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Continuum damage mechanics analyses of type IV creep failure in ferritic steel cross-welded specimens
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I.J. Perrin D.R. Hayhurst Continuum damage mechanics analyses of type IV creep failure in ferritic steel cross-welded specimens Int J Pressure Vessels Piping 76 1999 599
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10944254156
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Type IV creep cavitation in ferritic steel welds, creep and fatigue-design and life assessment at high temperature
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Swansea, 15-17 April 1996
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N. Walker S.T. Kimmins D.J. Smith Type IV creep cavitation in ferritic steel welds, creep and fatigue-design and life assessment at high temperature Proceedings, Sixth International Conference, Swansea, 15-17 April 1996 1996 p. 341-50
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Miller DA. Private communication. Re: 'Creep rupture testing of Cr Mo V pipe steel (ERA Project 63-01-040320009)', British energy, Barnwood, Gloucs., UK; 2000
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Miller, D.A.1
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0028530040
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Mechanisms-based creep constitutive equations for an aluminium alloy
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Z.L. Kowalewski D.R. Hayhurst B.F. Dyson Mechanisms-based creep constitutive equations for an aluminium alloy J Strain Anal 29 1994 309-316
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J. Strain Anal.
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Kowalewski, Z.L.1
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