AbstractAustenitic stainless steels (ASSs) are widely used for nuclear pipes as they exhibit a good combination of mechanical properties and corrosion resistance. However, high tensile residual stresses may occur in ASS welds because postweld heat treatment is not generally conducted in order to avoid sensitization, which causes a stress corrosion crack. In this study, round robin analyses on stress intensity factors (SIFs) were carried out to examine the appropriateness of structural integrity assessment methods for ASS pipe welds with two types of circumferential cracks. Typical stress profiles were generated from finite element analyses by considering residual stresses and normal operating conditions. Then, SIFs of cracked ASS pipes were...
Duplex stainless steels, which are extensively used in the energy industry for subsea piping, have s...
In the present paper, we propose an analytical method to calculate the Stress Intensity Factor (SIF)...
In the present paper, we propose an analytical method to calculate the Stress Intensity Factor (SIF)...
Austenitic stainless steels (ASSs) are widely used for nuclear pipes as they exhibit a good combinat...
AbstractAustenitic stainless steels (ASSs) are widely used for nuclear pipes as they exhibit a good ...
Defect assessments for pressure vessels and piping are increasingly used to support the economic and...
Surface cracks with aspect ratio a/ c> 1.0 can occur in pipes subjected to corrosion attacks. The...
It is typically assumed that weld residual stresses (WRSs) in the pipings of nuclear power plants (N...
It is typically assumed that weld residual stresses (WRSs) in the pipings of nuclear power plants (N...
The stress intensity factors (SIFs) for pipes containing semi-elliptical surface cracks with large a...
Leaks and cracks in the heat-affected zones of weldments in austenitic stainless steel piping and as...
a/c –aspect ratio Recent trouble with stress corrosion cracking in the internal parts of boiling wat...
The stress corrosion crack is one of the fracture phenomena for the major structure components in nu...
a/c –aspect ratio Recent trouble with stress corrosion cracking in the internal parts of boiling wat...
a/c –aspect ratio Recent trouble with stress corrosion cracking in the internal parts of boiling wat...
Duplex stainless steels, which are extensively used in the energy industry for subsea piping, have s...
In the present paper, we propose an analytical method to calculate the Stress Intensity Factor (SIF)...
In the present paper, we propose an analytical method to calculate the Stress Intensity Factor (SIF)...
Austenitic stainless steels (ASSs) are widely used for nuclear pipes as they exhibit a good combinat...
AbstractAustenitic stainless steels (ASSs) are widely used for nuclear pipes as they exhibit a good ...
Defect assessments for pressure vessels and piping are increasingly used to support the economic and...
Surface cracks with aspect ratio a/ c> 1.0 can occur in pipes subjected to corrosion attacks. The...
It is typically assumed that weld residual stresses (WRSs) in the pipings of nuclear power plants (N...
It is typically assumed that weld residual stresses (WRSs) in the pipings of nuclear power plants (N...
The stress intensity factors (SIFs) for pipes containing semi-elliptical surface cracks with large a...
Leaks and cracks in the heat-affected zones of weldments in austenitic stainless steel piping and as...
a/c –aspect ratio Recent trouble with stress corrosion cracking in the internal parts of boiling wat...
The stress corrosion crack is one of the fracture phenomena for the major structure components in nu...
a/c –aspect ratio Recent trouble with stress corrosion cracking in the internal parts of boiling wat...
a/c –aspect ratio Recent trouble with stress corrosion cracking in the internal parts of boiling wat...
Duplex stainless steels, which are extensively used in the energy industry for subsea piping, have s...
In the present paper, we propose an analytical method to calculate the Stress Intensity Factor (SIF)...
In the present paper, we propose an analytical method to calculate the Stress Intensity Factor (SIF)...