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Anthony P. Parker
Anthony P. Parker
University of Cranfield
Verified email at tiscali.co.uk
Title
Cited by
Cited by
Year
The mechanics of fracture and fatigue
AP Parker
An Introduction, 1981
2811981
Stress intensity factors, crack profiles, and fatigue crack growth rates in residual stress fields
AP Parker
Residual stress effects in fatigue, 1982
2231982
Autofrettage of open-end tubes—pressures, stresses, strains, and code comparisons
AP Parker
J. Pressure Vessel Technol. 123 (3), 271-281, 2001
2022001
Bauschinger effect design procedures for autofrettaged tubes including material removal and Sachs’ method
AP Parker, JH Underwood, DP Kendall
1231999
Dimensionless stress intensity factors for cracked thick cylinders under polynomial crack face loadings
CP Andrasic, AP Parker
Engineering Fracture Mechanics 19 (1), 187-193, 1984
931984
Thermal damage, cracking and rapid erosion of cannon bore coatings
JH Underwood, AP Parker, GN Vigilante, PJ Cote
J. Pressure Vessel Technol. 125 (3), 299-304, 2003
812003
Experimental data, numerical fit and fatigue life calculations relating to the Bauschinger effect in high strength armament steels
E Troiano, AP Parker, J Underwood, C Mossey
J. Pressure Vessel Technol. 125 (3), 330-334, 2003
792003
Characterization of steels using a revised kinematic hardening model incorporating Bauschinger effect
AP Parker, E Troiano, JH Underwood, C Mossey
J. Pressure Vessel Technol. 125 (3), 277-281, 2003
682003
Influence of Bauschinger effect on residual stress and fatigue lifetimes in autofrettaged thick-walled cylinders
AP Parker, JH Underwood, TL Panontin, SD Sheppard
ASTM International, 1999
681999
Stability of arrays of multiple edge cracks
AP Parker
Engineering Fracture Mechanics 62 (6), 577-591, 1999
651999
A boundary integral equation method for axisymmetric elastic contact problems
MJ Abdul-Mihsein, AA Bakr, AP Parker
Computers & structures 23 (6), 787-793, 1986
521986
Hydraulic versus swage autofrettage and implications of the Bauschinger effect
AP Parker, GP O’Hara, JH Underwood
J. Pressure Vessel Technol. 125 (3), 309-314, 2003
512003
A re-autofrettage procedure for mitigation of Bauschinger effect in thick cylinders
AP Parker
J. Pressure Vessel Technol. 126 (4), 451-454, 2004
502004
Stress intensity and fatigue crack growth in a pressurized, autofrettaged thick cylinder
AP Parker, JH Underwood, JF Throop, CP Andrasic
ASTM International, 1983
491983
Opening mode stress intensity factors for cracks in pin-loads joints
DJ Cartwright, AP Parker
International Journal of Fracture 18, 65-78, 1982
461982
On the equivalence of axisymmetric bending, thermal, and autofrettage residual stress fields
AP Parker, JR Farrow
The Journal of Strain Analysis for Engineering Design 15 (1), 51-52, 1980
441980
Stress intensity factors for multiple radial cracks emanating from the bore of an autofrettaged or thermally stressed, thick cylinder
AP Parker, JR Farrow
Engineering Fracture Mechanics 14 (1), 237-241, 1981
401981
Mechanisms and modeling comparing HB7 and A723 high strength pressure vessel steels
E Troiano, AP Parker, JH Underwood
J. Pressure Vessel Technol. 126 (4), 473-477, 2004
382004
Finite element investigation of Bauschinger effect in high-strength A723 pressure vessel steel
E Troiano, JH Underwood, AP Parker
372006
Residual stresses and lifetimes of tubes subjected to shrink fit prior to autofrettage
AP Parker, DP Kendall
J. Pressure Vessel Technol. 125 (3), 282-286, 2003
362003
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