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Specification for design and construction of ferrous piping installations for and in connection with land boilers
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3
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Specification for unfired fusion welded pressure vessels
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R5 ISSUE 3, Assessment procedures for the high temperature response of structures, British Energy Generation Ltd, Gloucester, UK., 2003.
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0015476777
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Engineering approaches to high-temperature design
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D. R. Hayhurst, Engineering approaches to high-temperature design, Chap. 3, Pineridge Press, Swansea 1983.
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Hayhurst, D.R.1
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10
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0042851154
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Skeletal point stresses in circumferentially notched tensions bars undergoing tertiary creep modelled with physically-based constitutive equations
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11
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24944468831
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Materials data bases and mechanisms-based constitutive equations for use in design
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Chapter A. Altenbach and J. J. Skrzypek, Springer-Wein, New York
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D. R. Hayhurst, Materials data bases and mechanisms-based constitutive equations for use in design, 167-205, Chapter [in:] Creep Damage in Materials and Structures, A. Altenbach and J. J. Skrzypek, Springer-Wein, New York 1999.
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12
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24944584197
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Thermodynamic Modelling and Materials Data Engineering
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Hayhurst, D.R.1
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13
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0015601950
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Stress redistribution and rupture due to creep in a uniformly stretched thin plate containing a circular hole
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D. R. Hayhurst, Stress redistribution and rupture due to creep in a uniformly stretched thin plate containing a circular hole, J. Appl. Mech., 40, 244-256, 1973.
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J. Appl. Mech.
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Hayhurst, D.R.1
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14
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0016540083
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Estimates of the creep rupture lifetime of structures using the finite element method
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J. Mech. Phys. Solids
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Hayhurst, D.R.1
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15
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0016951847
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Creep rupture of the andrade shear disc
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Hayhurst, D.R.1
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16
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0021442175
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Development of continuum damage in the creep rupture of notch bars
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D. R. Hayhurst, P. R. Dimmer and C. J. Morrison, Development of continuum damage in the creep rupture of notch bars, Phil. Trans. Roy. Soc. Lond. A., 316, 103-129, 1984.
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Phil. Trans. Roy. Soc. Lond. A
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Hayhurst, D.R.1
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17
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24944586489
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Creep continuum damage mechanics: A unifying theme in high-temperature design
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ESIS 12, L. H. Larson [Ed.], Mechanical Engineering Publications, London
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D. R. Hayhurst, Creep continuum damage mechanics: A unifying theme in high-temperature design, High-Temperature Structural Design, ESIS 12, L. H. Larson [Ed.], Mechanical Engineering Publications, London, 317-334, 1992.
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High-Temperature Structural Design
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Hayhurst, D.R.1
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18
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0016556310
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The effects of stress concentrations on the creep-rupture of tension panels
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D. R. Hayhurst, C. J. Morrison and F. A. Leckie, The effects of stress concentrations on the creep-rupture of tension panels, J. Appl. Mech., 42, 61-618, 1975.
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J. Appl. Mech.
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Hayhurst, D.R.1
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19
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0017635736
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Failure of structure by creep
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Tokyo, ASME
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W. Goodall and R. A. Ainsworth, Failure of structure by creep, Proc. 3rd Int. Conf. Press. Vess. Tech., Tokyo, vol. II, ASME, 871-882, 1977.
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20
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0002183668
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Long-term strength of alloy EI-437B under complex stresses
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Otd. Tech. Nauk
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Sdobyrev, V.P.1
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22
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0021440007
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The role of continuum damage in creep crack growth
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Lond
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D. R. Hayhurst, P. R. Brown and C. J. Morrison, The role of continuum damage in creep crack growth, Phil. Trans. R. Soc. A., Lond, 311, 131-158, 1984.
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23
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0030261377
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Prediction of plane-strain creep-crack growth using continuum damage mechanics
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24
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0001260287
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Modelling of grain size effects in creep crack growth using a non-local continuum damage approach
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25
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0002766225
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Type IV Cracking in 0. Cr 0.5Mo 0.25V/2.25Cr 1Mo weldments
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B. Wilshire, R. W. Evans, Swansea
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Proceedings of the Third International, Conference on Creep and Fatigue of Engineering Materials and Structures
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0001565116
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Continuum damage mechanics modeling of high-temperature deformation and failure in a pipe weldment
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A
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0021834180
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The behaviour of ferritic weldments in thick section 0.5Cr 0.5Mo 025V pipe at elevated temperature
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The industry creep programme, materials/analysis panel
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10044261045
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Reference Stress Methods - Analysing Safety and Design
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0030196275
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Creep constitutive equations for a 0.5 Cr 0.5 Mo 0.25 V ferritic steel in the temperature range 600° C to 675° C
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0032703885
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Type IV and coarse grained haz creep rupture of ferritic steel uni-axially loaded crossweld testpieces: Verification of 3-D parallel CDM software, DAMAGE XXX using 2-D analyses and experiments
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UMIST RESEARCH REPORT No: DMM. 03. 01 (revised)
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R. J. Hayhurst, F. Vakili-Tahami and D. R. Hayhurst, Type IV and coarse grained haz creep rupture of ferritic steel uni-axially loaded crossweld testpieces: verification of 3-D parallel CDM software, DAMAGE XXX using 2-D analyses and experiments, UMIST RESEARCH REPORT No: DMM. 03. 01 (revised), 2004.
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0028530040
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Mechanisms-based creep constitutive equations for an aluminium alloy
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37
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13844267513
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Creep constitutive equations for a 0.5Cr 0.5Mo 0.25V ferritic steel in the temperature range 565° - 675°C
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R. Mustata and D.R. Hayhurst, Creep constitutive equations for a 0.5Cr 0.5Mo 0.25V ferritic steel in the temperature range 565° - 675°C, Int. Jnl. Press. Vess. and Piping, 82, 363-372, 2005.
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10944267094
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Creep constitutive equations for Parent, Type IV, R-HAZ and weld material in the range 565-640° for Cr-Mo-V weldments
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R. J. Hayhurst, R. Mustata and D. R. Hayhurst, Creep constitutive equations for Parent, Type IV, R-HAZ and weld material in the range 565-640° for Cr-Mo-V weldments, Int. Jnl. Press. Vess. and Piping, 82, 137-144, 2005.
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39
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10044250099
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Thickness and multi-axial stress rapture criteria of the type iv component of a ferritic steel weld
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R5 medium bore branch life assessment
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British Energy, Barnwood, Report E/REP/ATEC/005/GEN/01
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Patel, G.1
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Chilcott, S.M.1
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24944573152
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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 590C using a 5-material model, to appear
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D. R. Hayhurst, R. J. Hayhurst and F. Vakili-Tahami, CDM predictions of creep damage initiation and growth in ferritic steel weldments in a medium bore branched pipe under constant pressure at 590C using a 5-material model, to appear: Proc. R. Soc. Lond.
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Proc. R. Soc. Lond.
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Hayhurst, D.R.1
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