7.08 – The Influence of Prior Loading on Structural Integrity
暂无分享,去创建一个
[1] G. G. Chell,et al. A theory of warm prestressing: experimental validation and the implications for elastic plastic failure criteria , 1981, International Journal of Fracture.
[2] G. Wang,et al. A strip model for fatigue crack growth predictions under general load conditions , 1991 .
[3] T. C. Lindley,et al. AN INVESTIGATION OF FATIGUE CRACK GROWTH IN A DUCTILE MATERIAL AT HIGH GROWTH RATES , 1988 .
[4] P. J. Webster,et al. Interpretation of residual stress distributions in previously loaded cracked beams , 1992 .
[5] M. R. James,et al. RELAXATION OF RESIDUAL STRESSES AN OVERVIEW , 1987 .
[6] S. J. Garwood,et al. Experimental study of effects of prior overload on fracture toughness of A533B steel , 1990 .
[7] K. Ray,et al. Effect of prestrain on fracture toughness of HSLA steels , 2000 .
[8] F. Delannay,et al. The coalescence of voids in prestrained notched round copper bars , 1998 .
[9] D. J. Smith,et al. Scatter in cleavage fracture toughness following proof loading , 1997 .
[10] Nicola Bonora,et al. On the dependence of the Weibull exponent on geometry and loading conditions and its implications on the fracture toughness probability curve using a local approach criterion , 2000 .
[11] D. J. Gooch. The effect of cold work on low temperature (0.35Tm) creep crack growth in CMn steels , 1984 .
[12] Robert A. Ainsworth,et al. The assessment of defects in structures of strain hardening material , 1984 .
[13] F. J. Loss,et al. Investigation of Warm Prestress for the Case of Small ΔT During a Reactor Loss-of-Coolant Accident , 1979 .
[14] J. H Chen,et al. Mechanism of effects of warm prestressing on apparent toughness of precracked specimens of HSLA steels , 2001 .
[15] Lyndon Edwards,et al. Measurement of the three-dimensional residual stress distribution around split-sleeve cold-expanded holes , 1996 .
[16] Genki Yagawa,et al. Verification of warm prestressing effect under a pressurized thermal shock (PTS) event , 1994 .
[17] C. A. McMahon,et al. EXPERIMENTAL MEASUREMENT AND FINITE ELEMENT SIMULATION OF THE INTERACTION BETWEEN RESIDUAL STRESSES AND MECHANICAL LOADING , 2001 .
[18] Cr Saff,et al. Spectrum Crack Growth Prediction Method Based on Crack Surface Displacement and Contact Analyses , 1976 .
[19] E. G. Ellison,et al. Creep Fatigue Interactions in a 1 CrMo V Steel , 1976 .
[20] A. Cottrell,et al. The spread of plastic yield from a notch , 1963, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[21] James C. Newman,et al. Prediction of Fatigue Crack Growth under Variable-Amplitude and Spectrum Loading Using a Closure Model , 1982 .
[22] J. H. Chen,et al. Quantification of the Warm Prestressing Effect in a Shape Welded 10 MnMoNi 5-5 Material , 2000 .
[23] F. M. Burdekin,et al. Views of TAGSI on the current position with regard to benefits of warm prestressing , 1999 .
[24] D. Smith,et al. The measurement of prior plastic deformation in metallic alloys using the neutron diffraction technique , 1997 .
[26] D. J. Smith,et al. The significance of prior overload on fracture resistance: a critical review , 1990 .
[28] Claudio Ruggieri,et al. Calibration of Weibull stress parameters using fracture toughness data , 1998 .
[29] G. G. Chell,et al. FATIGUE CRACK GROWTH LAWS FOR BRITTLE AND DUCTILE MATERIALS INCLUDING THE EFFECTS OF STATIC MODES AND ELASTIC‐PLASTIC DEFORMATION , 1984 .
[30] I. A. Shibli. Creep crack growth characteristics of prestrained C–Mn steels at 360°C , 1987 .
[31] B. Dyson,et al. Prestrain, Cavitation, and Creep Ductility , 1974 .
[32] G. J. Shoup,et al. The Effect of Proof Loading on the Fatigue Behavior of Open Link Chain , 1992 .
[33] J. R. Sorem,et al. The effect of proof loading on the fatigue behaviour of stud link chain , 1992 .
[34] G. G. Chell,et al. The effects of sub-critical crack growth on the fracture behaviour of cracked ferritic steels after warm prestressing , 1986 .
[35] P. Liaw,et al. Influence of prestrain history on fracture toughness properties of steels , 1986 .
[36] J. Parker,et al. The effects of prestrain on the creep and fracture behavior of polycrystalline copper , 1980 .
[37] D. A. Curry,et al. A micromechanistic approach to the warm pre-stressing of ferritic steels , 1981 .
[38] M. de Freitas,et al. Effect on fatigue crack growth of interactions between overloads , 2002 .
[39] W. Weibull. A Statistical Distribution Function of Wide Applicability , 1951 .
[40] F. W. Noble,et al. THE WARM PRESTRESSING EFFECT IN STEELS UNDERGOING INTERGRANULAR FRACTURE , 1997 .
[41] David Smith,et al. A new procedure based on Sachs' boring for measuring non axisymmetric residual stress , 2000 .
[42] A. Cowan,et al. A review of warm prestressing studies , 1983 .
[43] E. Kantidis,et al. Validation of a statistical criterion for intergranular brittle fracture of a low alloy steel through uniaxial and biaxial (tension-torsion) tests , 1994 .
[44] U. Eisele,et al. Structural behavior during a PTS transient taking into account the WPS effect , 2001 .
[45] John R. Rice,et al. ON THE RELATIONSHIP BETWEEN CRITICAL TENSILE STRESS AND FRACTURE TOUGHNESS IN MILD STEEL , 1973 .
[46] David J. Smith,et al. Predictions of fatigue crack growth in aluminium alloy 2024–T351 using constraint factors , 2001 .
[47] R. Sandström,et al. Influence of prestrain and strain aging on cleavage fracture in C–Mn steel , 1981 .
[48] W Schmitt,et al. Experimental and numerical investigations of the warm-prestressing (WPS) effect considering different load paths , 2000 .
[49] H. Christ,et al. Influence of prestraining on cyclic deformation behaviour and microstructure of a single-phase Ni-base superalloy , 2001 .
[50] D. S. Dugdale. Yielding of steel sheets containing slits , 1960 .
[51] J. Schijve,et al. The effect of pre-strain on fatigue crack growth and crack closure , 1975 .
[52] K. N. Smith. A Stress-Strain Function for the Fatigue of Metals , 1970 .
[53] Harry R. Millwater,et al. A Probabilistic Fracture Mechanics Analysis of Multiple-Cycle Proof Testing , 1996 .
[54] J. Rice,et al. Plane strain deformation near a crack tip in a power-law hardening material , 1967 .
[55] John W. Hutchinson,et al. Singular behaviour at the end of a tensile crack in a hardening material , 1968 .
[56] J. Cheng,et al. Effect of fracture mode on warm prestressing , 1995 .
[58] M. Raghavan,et al. Effect of prestrain on fatigue crack propagation in mild steel containing non-metallic inclusions , 1988 .
[59] G. R. Halford,et al. Re-examination of cumulative fatigue damage analysis—an engineering perspective , 1986 .
[60] S. J. Garwood,et al. An analysis of fracture under biaxial loading using the non-singular T-stress , 2001 .
[61] Genki Yagawa,et al. Probabilistic fracture mechanics analyses of nuclear pressure vessels under PTS events , 1997 .
[62] Anthony P. Parker,et al. Bauschinger Effect Design Procedures for Autofrettaged Tubes Including Material Removal and Sachs’ Method , 1999 .
[63] S. Manson. Fatigue: A complex subject—Some simple approximations , 1965 .
[64] M. J. Pavier,et al. The effect of cold expansion on fatigue crack growth from open holes at room and high temperature , 2001 .
[65] Hamish Fowler. The influence of warm prestressing and proof loading on the cleavage fracture toughness of ferritic steels , 1998 .
[66] D. J. Gooch. The effect of anisotropy on creep and creep crack growth in cold-worked CMn steel at 360°C , 1987 .
[67] S. Kalluri,et al. Prestraining and Its Influence on Subsequent Fatigue Life , 1995 .
[68] D. J. Smith,et al. Application of theoretical methods to predict overload effects on fracture toughness of A533B , 1990 .
[69] David J. Smith,et al. Fatigue crack growth from plain and cold expanded holes in aluminium alloys , 2000 .
[70] W. J. Mills,et al. Fracture toughness of type 304 and 316 stainless steels and their welds , 1997 .
[71] C. Laird,et al. Cyclic stress-strain response of F.C.C. metals and alloys—I Phenomenological experiments , 1967 .
[72] R. Maskell,et al. CREEP CRACK GROWTH IN INTERNALLY PRESSURISED TUBES , 1998 .
[73] S Hadidi-Moud,et al. Predicting How Crack Tip Residual Stresses Influence Brittle Fracture , 2002 .
[74] R. Hales,et al. Prestrain effects on creep ductility of a 316 stainless steel light forging , 1999 .
[75] T. C. Lindley. The effect of a pre-strain on the low temperature mechanical properties of a low carbon steel , 1965 .
[76] G. P. Karzov,et al. Brittle fracture of nuclear pressure vessel steels—I. Local criterion for cleavage fracture , 1997 .
[77] Yahya,et al. STATISTICAL MODELLING OF INTERGRANULAR BRITTLE FRACTURE IN A LOW ALLOY STEEL , 1998 .
[78] D. Smith,et al. Influence of prior cyclic hardening on high temperature deformation and crack growth in type 316L (N) stainless steel , 1998 .
[79] G. G. Chell,et al. The effect of warm prestressing on proof tested pressure vessels , 1986 .
[80] Genki Yagawa,et al. Further experimental verification of warm prestressing effect under pressurized thermal shock (PTS) , 1996 .
[81] F. J. Loss,et al. Significance of warm prestress to crack initiation during thermal shock. Interim report. [Loss of coolant accidents] , 1977 .
[82] D. O. Harris. A Means of Assessing the Effects of Periodic Proof Testing and NDE on the Reliability of Cyclically Loaded Structures , 1978 .
[83] G. Wheatley,et al. Effects of a single tensile overload on fatigue crack growth in a 316L steel , 1999 .
[84] Pommier,et al. Bauschinger effect of alloys and plasticity-induced crack closure: a finite element analysis , 2000 .
[85] Philippa A.S. Reed,et al. INVESTIGATION OF THE ROLE OF RESIDUAL STRESSES IN THE WARM PRESTRESS (WPS) EFFECT. PART II—ANALYSIS , 1996 .
[87] S. Daniewicz. A closed-form small-scale yielding collinear strip yield model for strain hardening materials , 1994 .
[88] J. Newman. A crack-closure model for predicting fatigue crack growth under aircraft spectrum loading , 1981 .
[89] Michael B. Prime,et al. Measuring residual stress and the resulting stress intensity factor in compact tension specimens , 1999 .
[90] Philippa A.S. Reed,et al. An investigation of the warm prestressing (WPS) effect in A533B weld metal , 1992 .
[91] A. Pineau,et al. A local criterion for cleavage fracture of a nuclear pressure vessel steel , 1983 .
[92] Michael R. Hill,et al. Residual stress, stress relief, and inhomogeneity in aluminum plate , 2002 .
[93] Gary R. Halford,et al. Investigation of residual stress relaxation under cyclic load , 2001 .
[94] O. E. Wheeler. Spectrum Loading and Crack Growth , 1972 .
[95] P. R. Mccarthy,et al. A survey of European Creep Crack growth data generation from weldments and recommendations for a draft code of practice 7 , 1998 .