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Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Matls. Perf. Charact.. April 2025, 14(1): 49–61.
Paper No: MPC20240036
Published Online: April 3, 2025
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Matls. Perf. Charact.. April 2025, 14(1): 35–48.
Paper No: MPC20240077
Published Online: March 27, 2025
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Matls. Perf. Charact.. April 2025, 14(1): 26–34.
Paper No: MPC20240030
Published Online: March 25, 2025
Journal Articles
Publisher: ASTM International
Article Type: Review Articles
Matls. Perf. Charact.. April 2025, 14(1): 1–25.
Paper No: MPC20240039
Published Online: March 21, 2025
Journal Articles
Publisher: ASTM International
Article Type: Editorial
Matls. Perf. Charact.. December 2024, 13(2): 1.
Paper No: MPC20240999
Published Online: December 23, 2024
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Matls. Perf. Charact.. October 2024, 13(1): 263–270.
Paper No: MPC20240008
Published Online: December 2, 2024
Image
in Effect of Hydrogen Reduction on the Optical and Giant Dielectric Properties of (La/Ni) Merge Co-doped Rutile TiO 2 Nanoparticles
> Materials Performance and Characterization
Published Online: December 2, 2024
FIG. 1 XRD patterns of the synthesized NP ceramics. More about this image found in XRD patterns of the synthesized NP ceramics.
Image
in Effect of Hydrogen Reduction on the Optical and Giant Dielectric Properties of (La/Ni) Merge Co-doped Rutile TiO 2 Nanoparticles
> Materials Performance and Characterization
Published Online: December 2, 2024
FIG. 2 ( A ) Optical absorption spectra of the synthesized NP ceramic samples; ( B ) optical absorption spectra of the synthesized NP ceramics in the range 500–800 nm; and ( C ) Tauc plots for the synthesized NP ceramic samples. More about this image found in ( A ) Optical absorption spectra of the synthesized NP ceramic samples; ( B...
Image
in Effect of Hydrogen Reduction on the Optical and Giant Dielectric Properties of (La/Ni) Merge Co-doped Rutile TiO 2 Nanoparticles
> Materials Performance and Characterization
Published Online: December 2, 2024
FIG. 3 ( A ) Frequency-dependence of the dielectric loss-factor of the synthesized ceramics and ( B ) frequency-dependence of the dielectric permittivity ( ε ′) of the synthesized ceramics. More about this image found in ( A ) Frequency-dependence of the dielectric loss-factor of the synthesized...
Image
in Effect of Hydrogen Reduction on the Optical and Giant Dielectric Properties of (La/Ni) Merge Co-doped Rutile TiO 2 Nanoparticles
> Materials Performance and Characterization
Published Online: December 2, 2024
FIG. 4 Frequency-dependence of AC-conductance (G) of the synthesized ceramics. More about this image found in Frequency-dependence of AC-conductance (G) of the synthesized ceramics.
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Matls. Perf. Charact.. December 2024, 13(2): 144–164.
Paper No: MPC20230133
Published Online: October 8, 2024
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 1 Flow chart of life prediction method. More about this image found in Flow chart of life prediction method.
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 2 Typical indentation depth versus cycles of fatigue loading response during cyclic indentation studies on an IN617 alloy. More about this image found in Typical indentation depth versus cycles of fatigue loading response during ...
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 3 Typical load versus indenter displacement response during loading and unloading segments—different paths suggest hysteresis response during cyclic ABI loading. More about this image found in Typical load versus indenter displacement response during loading and unloa...
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 4 Typical scanning electron microscope image of regions underneath the spherical indenter after cyclic indentation studies; the presence of microcracks in the scanning electron microscopy image can be seen. More about this image found in Typical scanning electron microscope image of regions underneath the spheri...
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 5 Typical acoustic emission signature in the form of cumulative AE counts versus cycles of cyclic indentation loading. Sudden increase in cumulative counts can be seen at approximately 2,951 cycles. More about this image found in Typical acoustic emission signature in the form of cumulative AE counts ver...
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 6 Pile-up response in materials during indentation testing. More about this image found in Pile-up response in materials during indentation testing.
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 7 Schematic of hourglass SS304L specimen used in this study. More about this image found in Schematic of hourglass SS304L specimen used in this study.
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 8 ( A ) Photograph of MTS 810 servo-hydraulic test system used for indentation studies and ( B ) schematic of ball indenter. More about this image found in ( A ) Photograph of MTS 810 servo-hydraulic test system used for indentatio...
Image
in Understanding Fatigue Damage Progression in Stainless Steel 304L through Static and Cyclic Indentation Studies
> Materials Performance and Characterization
Published Online: October 8, 2024
FIG. 9 Typical load versus indenter displacement response of SS304L during static ABI test in pristine condition. More about this image found in Typical load versus indenter displacement response of SS304L during static ...
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