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1-20 of 18994
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Journal Articles
Accepted Manuscript
Publisher: ASME
Article Type: Editorial
J. Eng. Mater. Technol.
Paper No: MATS-25-1041
Published Online: March 12, 2025
Topics:
Materials processing
Journal Articles
Accepted Manuscript
Publisher: ASME
Article Type: Research Papers
J. Eng. Mater. Technol.
Paper No: MATS-24-1206
Published Online: March 7, 2025
Journal Articles
Accepted Manuscript
Publisher: ASME
Article Type: Research Papers
J. Eng. Mater. Technol.
Paper No: MATS-25-1006
Published Online: March 7, 2025
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Eng. Mater. Technol. July 2025, 147(3): 031005.
Paper No: MATS-24-1229
Published Online: February 28, 2025
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 1 XRD Pattern of Haynes 282 alloy in ( a ) full range of angle 2 θ and ( b ) zoomed range of angle 2 θ More about this image found in XRD Pattern of Haynes 282 alloy in ( a ) full range of angle 2 θ and ( b )...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 2 SEM Microstructure of Haynes 282 alloy: ( a ) at low magnification and ( b ) at high magnification More about this image found in SEM Microstructure of Haynes 282 alloy: ( a ) at low magnification and ( b ...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 3 EBSD Diagrams of Haynes 282 alloy: ( a ) inverse pole figures, ( b ) pole figures, ( c ) grain size distribution, and ( d ) misorientation distribution More about this image found in EBSD Diagrams of Haynes 282 alloy: ( a ) inverse pole figures, ( b ) pole f...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 4 Schematic demonstration of the framework of proposed approach More about this image found in Schematic demonstration of the framework of proposed approach
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 5 Microstructural information for RVE: ( a ) grain size distribution and ( b ) misorientation distributions More about this image found in Microstructural information for RVE: ( a ) grain size distribution and ( b ...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 6 A meshed RVE for Haynes 282 alloy More about this image found in A meshed RVE for Haynes 282 alloy
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 7 Boundary conditions of RVE More about this image found in Boundary conditions of RVE
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 8 Comparison of stabilized hysteresis loop between model simulation and experimental observation for strain amplitude of ( a ) 0.3%, ( b ) 0.4%, ( c ) 0.5%, and ( d ) 0.6% More about this image found in Comparison of stabilized hysteresis loop between model simulation and exper...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 9 SEM Image of fractured surface of tested Haynes 282 coupon at an applied strain of 0.4% More about this image found in SEM Image of fractured surface of tested Haynes 282 coupon at an applied st...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 10 Contour plots for RVE at the maximum displacement of 20th cycle at an applied strain of 0.3%: (a ) Von Mises stress distribution and (b ) plastic slip distribution More about this image found in Contour plots for RVE at the maximum displacement of 20th cycle at an appli...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 11 TEM image of dislocation activities in adjacent grains at an applied strain of 0.4% More about this image found in TEM image of dislocation activities in adjacent grains at an applied strain...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 12 Comparison of fatigue life between model predictions and test data More about this image found in Comparison of fatigue life between model predictions and test data
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 13 Averaged shear strain range Δ γ α and Schmid factor M of all active slip systems for grain 408 in RVE 11 at last saturated cycle under strain amplitude ε a = 0.3 % More about this image found in Averaged shear strain range Δ γ α and Schmid factor M of all ...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 14 Averaged shear strain range Δ γ α and Schmid factor M of all active slip systems for grain 99 in RVE 11 at last saturated cycle under strain amplitude ε a = 0.3 % More about this image found in Averaged shear strain range Δ γ α and Schmid factor M of all ...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 15 Averaged current strength Δ g α and resolved shear stress amplitude τ α of all active slip systems for grain 408 in RVE 11 at last saturated cycle under strain amplitude ε a = 0.3 % More about this image found in Averaged current strength Δ g α and resolved shear stress ampli...
Image
in Computational Prediction of Total Fatigue Life With an Integrated Approach
> Journal of Engineering Materials and Technology
Published Online: February 28, 2025
Fig. 16 Averaged current strength Δ g α and resolved shear stress amplitude τ α of all active slip systems for grain 99 in RVE 11 at last saturated cycle under strain amplitude ε a = 0.3 % More about this image found in Averaged current strength Δ g α and resolved shear stress ampli...
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