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1-20 of 19004
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Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Eng. Mater. Technol. July 2025, 147(3): 031006.
Paper No: MATS-25-1006
Published Online: March 24, 2025
Journal Articles
Publisher: ASME
Article Type: Editorial
J. Eng. Mater. Technol. July 2025, 147(3): 030201.
Paper No: MATS-25-1041
Published Online: March 24, 2025
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 1 Schematic CMT-WAAM experimental setup with ultrasonic vibration unit for dissimilar alloy using remote-controlled traveler with deposition strategy More about this image found in Schematic CMT-WAAM experimental setup with ultrasonic vibration unit for di...
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 2 ( a ) Schematic diagram of tensile and microstructure of dissimilar alloy, ( b ) Manufactured WAAM wall of dissimilar SDSS2507–IN718 alloy, and ( c ) Tensile specimen dimensions More about this image found in ( a ) Schematic diagram of tensile and microstructure of dissimilar alloy, ...
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 3 ( a ) Microstructural characteristics without and with UV and ( b ) Grain size variation under different processing conditions More about this image found in ( a ) Microstructural characteristics without and with UV and ( b ) Grain s...
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 4 Energy-dispersive X-ray spectroscope analysis results of dissimilar SDSS2507–IN718 parts fabricated by CMT-WAAM: ( a ) without ultrasonic vibrations and ( b ) with ultrasonic vibrations More about this image found in Energy-dispersive X-ray spectroscope analysis results of dissimilar SDSS250...
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 5 Dissimilar SDSS2507–IN718 alloy interface region EDS mapping More about this image found in Dissimilar SDSS2507–IN718 alloy interface region EDS mapping
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 6 Microhardness variation of dissimilar SDSS2507–IN718 parts with or without UV More about this image found in Microhardness variation of dissimilar SDSS2507–IN718 parts with or without ...
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 7 Comparison of ( a ) stress–strain curve, ( b ) UTS, ( c ) yield strength, and ( d ) ductility of CMT DED fabricated dissimilar SDSS2507–IN718 parts with or without UV More about this image found in Comparison of ( a ) stress–strain curve, ( b ) UTS, ( c ) yield strength, a...
Image
in Ultrasonic Vibration-Assisted Cold Metal Transfer Direct Energy Deposition of Dissimilar SDSS2507–IN718 Alloy Parts: Microstructural and Mechanical Characterization
> Journal of Engineering Materials and Technology
Published Online: March 24, 2025
Fig. 8 SEM morphology of fractured surfaces ( a )–( c ) without UV and ( d )–( f ) with UV of tensile specimens More about this image found in SEM morphology of fractured surfaces ( a )–( c ) without UV and ( d )–( f )...
Journal Articles
Accepted Manuscript
Publisher: ASME
Article Type: Research Papers
J. Eng. Mater. Technol.
Paper No: MATS-24-1231
Published Online: March 21, 2025
Journal Articles
Accepted Manuscript
Publisher: ASME
Article Type: Research Papers
J. Eng. Mater. Technol.
Paper No: MATS-24-1189
Published Online: March 21, 2025
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
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
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