This paper proposes an engineering methodology for estimating stress intensity factor (K) Solutions for semi-elliptical weld toe cracks in tubular joints. The methodology uses the T-butt solutions proposed previously by the authors in conjunction with the joints. The estimated K factors are then compared stress concentration factors and the degrees of bending in the uncracked tubular with those obtained from a well-validated finite element procedure and the validity of the proposed methodology is demonstrated. A more refined way of calculating the uncracked stress field parameters which leads to more accurate predictions is also proposed. Fatigue crack growth calculations on experimental joints indicate that the proposed methodology is cons...
Weld toe magnification factors are widely used in the evaluation of stress intensity factors for cra...
Accurate information on stress distributions along the intersection is required for fatigue strength...
With welded joints, stress concentrations occur at the weld toe and at the weld root, which make the...
The stress intensity factors at the deepest point and at the crack ends of a surface crack in a tubu...
Owing to the complex geometry and non-uniform stress distribution, it is extremely difficult to obta...
During the design stage, the peak stress is usually needed for estimating the fatigue life of offsho...
This thesis is concerned with the development of tools and methodologies for non-destructive fatigue...
This paper reports a study on the determination of stress intensity factors in tubular joints in off...
This report will focus mainly on the determination of the stress intensity factors of cracked tubula...
Fatigue tests on tubular joints have shown that as a crack propagates through the chord wall, it cur...
Experimental tests on offshore tubular joints show that fatigue cracks, as well as curving around th...
A set of comprehensive estimation equations for the weld toe magnification factor (Mk) for semi-elli...
The accurate prediction of stress concentration factors (SCF) at weld toes is recognised as one of t...
Fatigue crack growth calculations were performed on offshore tubular joints using the Paris crack gr...
An extensive parametric study, using finite elements, of the stress concentration factors in tubular...
Weld toe magnification factors are widely used in the evaluation of stress intensity factors for cra...
Accurate information on stress distributions along the intersection is required for fatigue strength...
With welded joints, stress concentrations occur at the weld toe and at the weld root, which make the...
The stress intensity factors at the deepest point and at the crack ends of a surface crack in a tubu...
Owing to the complex geometry and non-uniform stress distribution, it is extremely difficult to obta...
During the design stage, the peak stress is usually needed for estimating the fatigue life of offsho...
This thesis is concerned with the development of tools and methodologies for non-destructive fatigue...
This paper reports a study on the determination of stress intensity factors in tubular joints in off...
This report will focus mainly on the determination of the stress intensity factors of cracked tubula...
Fatigue tests on tubular joints have shown that as a crack propagates through the chord wall, it cur...
Experimental tests on offshore tubular joints show that fatigue cracks, as well as curving around th...
A set of comprehensive estimation equations for the weld toe magnification factor (Mk) for semi-elli...
The accurate prediction of stress concentration factors (SCF) at weld toes is recognised as one of t...
Fatigue crack growth calculations were performed on offshore tubular joints using the Paris crack gr...
An extensive parametric study, using finite elements, of the stress concentration factors in tubular...
Weld toe magnification factors are widely used in the evaluation of stress intensity factors for cra...
Accurate information on stress distributions along the intersection is required for fatigue strength...
With welded joints, stress concentrations occur at the weld toe and at the weld root, which make the...