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Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Pressure Vessel Technol. October 2025, 147(5): 051502.
Paper No: PVT-25-1006
Published Online: May 13, 2025
Image
Illustration of the slip oxidation mechanism
Open Access
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 1 Illustration of the slip oxidation mechanism More about this image found in Illustration of the slip oxidation mechanism
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 2 Comparison between the SCC CGR data of Alloy 82 in BWR NWC condition at 288 °C and the calculation results. Plotted experimental data were from the literature [ 11 , 12 ]. More about this image found in Comparison between the SCC CGR data of Alloy 82 in BWR NWC condition at 288...
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 3 Comparison between the results of the calculations using model Eq. (4) and those using the power law of K and the SCC CGR disposition curve proposed by EPRI [ 11 , 12 ] for SCC CGR of Alloy 82 in BWR NWC condition at 288 °C. More about this image found in Comparison between the results of the calculations using model Eq. (4) an...
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 4 Comparison between the SCC CGR data of Alloy X-750 in BWR NWC condition at 288 °C and the calculation results. Plotted experimental data were from the literature [ 14 ]. More about this image found in Comparison between the SCC CGR data of Alloy X-750 in BWR NWC condition at ...
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 5 Comparison between the results of the calculations using model Eq. (11) and the experimental data for 15% cold worked Type 316 L SSs in simulated BWR condition at 288 °C. Plotted experimental data were from the literature [ 16 ]. More about this image found in Comparison between the results of the calculations using model Eq. (11) a...
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 6 Comparison of the calculation results obtained using model Eq. (11) and those obtained using the power law of K from the data with a yield stress σ y of 478 MPa for 15% cold worked Type 316 L SSs in simulated BWR condition. More about this image found in Comparison of the calculation results obtained using model Eq. (11) and t...
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 7 Comparison between the calculation results obtained using model Eq. (11) with the experimental data [ 18 , 19 ]. σ y = 650 MPa was used for the calculation. More about this image found in Comparison between the calculation results obtained using model Eq. (11) ...
Image
in Formulation of the Stress Corrosion Crack Growth Rates Based on the Theoretical Strain Rate Model for Light Water Reactors
> Journal of Pressure Vessel Technology
Published Online: May 13, 2025
Fig. 8 Comparison between the calculation results obtained using model Eq. (11) for σ y = 700 MPa with the normalized NWC data [ 21 ]. σ y = 700 MPa was used for the calculation. More about this image found in Comparison between the calculation results obtained using model Eq. (11) ...
Journal Articles
Seismic response analysis of the buried pipeline with double corrosion defects in permafrost regions under oblique incidence of SV waves
Available to Purchase
Accepted Manuscript
Publisher: ASME
Article Type: Research-Article
J. Pressure Vessel Technol.
Paper No: PVT-24-1145
Published Online: May 12, 2025
Journal Articles
Fatigue Limit Analysis of Notched Components by a Local Approach+
Available to Purchase
Publisher: ASME
Article Type: Technical Briefs
J. Pressure Vessel Technol. October 2025, 147(5): 054501.
Paper No: PVT-25-1019
Published Online: May 8, 2025
Image
Coordinate system and symbols used for the stress field components (taken f...
Available to Purchase
in Fatigue Limit Analysis of Notched Components by a Local Approach+
> Journal of Pressure Vessel Technology
Published Online: May 8, 2025
Fig. 1 Coordinate system and symbols used for the stress field components (taken from Ref. [ 19 ]) More about this image found in Coordinate system and symbols used for the stress field components (taken f...
Image
Frost, Smith and Miller's diagram
Available to Purchase
in Fatigue Limit Analysis of Notched Components by a Local Approach+
> Journal of Pressure Vessel Technology
Published Online: May 8, 2025
Fig. 2 Frost, Smith and Miller's diagram More about this image found in Frost, Smith and Miller's diagram
Image
Schematic illustration of three regions in Frost, Smith and Miller's diagra...
Available to Purchase
in Fatigue Limit Analysis of Notched Components by a Local Approach+
> Journal of Pressure Vessel Technology
Published Online: May 8, 2025
Fig. 3 Schematic illustration of three regions in Frost, Smith and Miller's diagram More about this image found in Schematic illustration of three regions in Frost, Smith and Miller's diagra...
Image
Variation of notch fracture toughness with notch radius (data from Gómez et...
Available to Purchase
in Fatigue Limit Analysis of Notched Components by a Local Approach+
> Journal of Pressure Vessel Technology
Published Online: May 8, 2025
Fig. 4 Variation of notch fracture toughness with notch radius (data from Gómez et al. [ 30 ]) More about this image found in Variation of notch fracture toughness with notch radius (data from Gómez et...
Image
Schematic illustration of calculating the SCFs by Lazzarin and Filippi form...
Available to Purchase
in Fatigue Limit Analysis of Notched Components by a Local Approach+
> Journal of Pressure Vessel Technology
Published Online: May 8, 2025
Fig. 5 Schematic illustration of calculating the SCFs by Lazzarin and Filippi formula More about this image found in Schematic illustration of calculating the SCFs by Lazzarin and Filippi form...
Image
A schematic illustration: the magnitude of the stress corresponding to the ...
Available to Purchase
in Fatigue Limit Analysis of Notched Components by a Local Approach+
> Journal of Pressure Vessel Technology
Published Online: May 8, 2025
Fig. 6 A schematic illustration: the magnitude of the stress corresponding to the elastic strain e ε at a given load is equal to the magnitude of the stress according to the elastic–plastic analysis at the given load More about this image found in A schematic illustration: the magnitude of the stress corresponding to the ...
Journal Articles
Investigation of Hydrostatic Pressure Resistance in Composite Pipes Reinforced With Glass and Aramid Fibers
Available to Purchase
Publisher: ASME
Article Type: Research-Article
J. Pressure Vessel Technol. August 2025, 147(4): 041304.
Paper No: PVT-24-1171
Published Online: May 8, 2025
Journal Articles
Study on the Effect of Pressure Rise Rate on the Burst Pressure and Failure Regularity of Conventional Domed Rupture Disk
Available to Purchase
Publisher: ASME
Article Type: Research-Article
J. Pressure Vessel Technol. August 2025, 147(4): 041305.
Paper No: PVT-24-1178
Published Online: May 8, 2025
Journal Articles
Theoretical Solution of Square Shell Under Internal Pressure
Available to Purchase
Publisher: ASME
Article Type: Research-Article
J. Pressure Vessel Technol. October 2025, 147(5): 051301.
Paper No: PVT-25-1022
Published Online: May 8, 2025
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