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electron backscatter diffraction geminisem300  (Rigaku Corporation)


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    Structured Review

    Rigaku Corporation electron backscatter diffraction geminisem300
    Electron Backscatter Diffraction Geminisem300, supplied by Rigaku Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/electron+backscatter+diffraction/electron+backscatter+diffraction+geminisem300/pm36770146-58-15-12
    Average 90 stars, based on 1 article reviews
    electron backscatter diffraction geminisem300 - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Electron Microscopy:

    Article Title: Study on Microstructure and Mechanical Properties of TC4/AZ31 Magnesium Matrix Nanocomposites.
    Article Snippet: .. Microstructure Characterization Using scanning electron microscopy (SEM; GeminiSEM300), an X-ray diffractometer (XRD; Rigaku SmartLab), and electron backscatter diffraction (EBSD; GeminiSEM300), we studied the microstructure of as-extruded TC4/AZ31 composites. ..

    Article Title: Phosphorus doping to boost the electro-Fenton degradation of sulfamethoxazole using mixed-valence copper(I and II) phosphate/etched graphite felt cathode
    Article Snippet: Non-metallic atom doping is a good strategy to promote the cathode performance in the electro-Fenton process.. Therefore, a mixed-valence copper (I and II) phosphate (Cu2PO4) catalyst on P-doped etched graphite felt (EGF), with a strip-groove rough surface, was prepared in this study.. The P-doped Cu2PO4/EGF electrode completely removed sulfamethoxazole (SMX) from contaminated water within 90 min over a wide pH range of 5.6–9 and removed 99.6% of SMX at pH 11.

    X-ray Diffraction:

    Article Title: Phosphorus doping to boost the electro-Fenton degradation of sulfamethoxazole using mixed-valence copper(I and II) phosphate/etched graphite felt cathode
    Article Snippet: Non-metallic atom doping is a good strategy to promote the cathode performance in the electro-Fenton process.. Therefore, a mixed-valence copper (I and II) phosphate (Cu2PO4) catalyst on P-doped etched graphite felt (EGF), with a strip-groove rough surface, was prepared in this study.. The P-doped Cu2PO4/EGF electrode completely removed sulfamethoxazole (SMX) from contaminated water within 90 min over a wide pH range of 5.6–9 and removed 99.6% of SMX at pH 11.

    Spectroscopy:

    Article Title: Phosphorus doping to boost the electro-Fenton degradation of sulfamethoxazole using mixed-valence copper(I and II) phosphate/etched graphite felt cathode
    Article Snippet: Non-metallic atom doping is a good strategy to promote the cathode performance in the electro-Fenton process.. Therefore, a mixed-valence copper (I and II) phosphate (Cu2PO4) catalyst on P-doped etched graphite felt (EGF), with a strip-groove rough surface, was prepared in this study.. The P-doped Cu2PO4/EGF electrode completely removed sulfamethoxazole (SMX) from contaminated water within 90 min over a wide pH range of 5.6–9 and removed 99.6% of SMX at pH 11.



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    EBSD analysis of the T6-treated AC alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

    Journal: Materials

    Article Title: Evolution of the Young’s Modulus of Al-7Si-4Cu Alloy with Increasing Temperature by Various Strengthening Approaches

    doi: 10.3390/ma19091831

    Figure Lengend Snippet: EBSD analysis of the T6-treated AC alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

    Article Snippet: Electron backscatter diffraction (EBSD) analysis was performed using a JEOL JSM-7800F SEM (Japan Electron Optics Laboratory Co., Ltd., Tokyo, Japan) to characterize the grain size, crystallographic orientation, grain boundary (GB) distribution, and recrystallized fraction (RF).

    Techniques:

    EBSD analysis of the T6-treated AE alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

    Journal: Materials

    Article Title: Evolution of the Young’s Modulus of Al-7Si-4Cu Alloy with Increasing Temperature by Various Strengthening Approaches

    doi: 10.3390/ma19091831

    Figure Lengend Snippet: EBSD analysis of the T6-treated AE alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

    Article Snippet: Electron backscatter diffraction (EBSD) analysis was performed using a JEOL JSM-7800F SEM (Japan Electron Optics Laboratory Co., Ltd., Tokyo, Japan) to characterize the grain size, crystallographic orientation, grain boundary (GB) distribution, and recrystallized fraction (RF).

    Techniques:

    EBSD microstructures of Cr-Ni-Mo-V steel at different tempering temperatures: ( a ) 425 °C; ( b ) 475 °C; ( c ) 525 °C; ( d ) 575 °C; ( e ) 625 °C; ( f ) proportion of HAGBs.

    Journal: Materials

    Article Title: Effect of Tempering Temperature on Microstructural Evolution and Mechanical Properties of Cr-Ni-Mo-V Steel for Pressure Vessel Applications

    doi: 10.3390/ma19091679

    Figure Lengend Snippet: EBSD microstructures of Cr-Ni-Mo-V steel at different tempering temperatures: ( a ) 425 °C; ( b ) 475 °C; ( c ) 525 °C; ( d ) 575 °C; ( e ) 625 °C; ( f ) proportion of HAGBs.

    Article Snippet: For orientation and grain boundary analysis, specimens were electropolished in a 5% perchloric acid–ethanol solution at 15 V for 50 s. The crystal orientation and grain boundary distribution of the experimental steel were analyzed by means of an electron backscatter diffraction (EBSD) detector (EDAX Velocity Super) (EDAX LLC, Mahwah, NJ, USA), and the data acquisition step was 0.2 μm.

    Techniques: