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symmetry s3 electron backscatter diffraction ebsd detector  (Oxford Instruments)


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    Structured Review

    Oxford Instruments symmetry s3 electron backscatter diffraction ebsd detector
    Symmetry S3 Electron Backscatter Diffraction Ebsd Detector, supplied by Oxford Instruments, used in various techniques. Bioz Stars score: 98/100, based on 1577 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/electron+backscatter+diffraction+detector/Symmetry/pm41922048-104-18-16
    Average 98 stars, based on 1577 article reviews
    symmetry s3 electron backscatter diffraction ebsd detector - by Bioz Stars, 2026-09
    98/100 stars

    Images

    Related Articles

    Spectroscopy:

    Article Title: Welding-Induced Heterogeneity Promotes Gradient Nanostructuring in Laser-Welded 304 Stainless Steel Joints.
    Article Snippet: microstructural evolution was characterized using a scanning electron microscope (SEM, Apreo 2S, Thermo Fisher Scientific, Hillsboro, OR, USA) equipped with an electron backscatter diffraction (EBSD, Oxford Instruments, Abingdon, UK) detector. EBSD data were acquired via the Aztec Crystal acquisition software (Symmetry S3) under an accelerating voltage of 20 kV with a step size of 80 nm and 500 nm

    Article Title: Unsupervised multivariate analysis of multiple analysis data fusion combining hydrogen distribution and crystallographic orientation image data of vanadium alloy sample.
    Article Snippet: Without polishing, EBSD images were then obtained in the same state.Without polishing, EBSD images were then obtained in the same state.. Electron backscatter diffraction (EBSD) The vanadium samples were analyzed using a SEM (JSM-7100F, JEOL) and EBSD (Symmetry, Oxford Instruments).. The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.

    X-ray Spectroscopy:

    Article Title: Welding-Induced Heterogeneity Promotes Gradient Nanostructuring in Laser-Welded 304 Stainless Steel Joints.
    Article Snippet: microstructural evolution was characterized using a scanning electron microscope (SEM, Apreo 2S, Thermo Fisher Scientific, Hillsboro, OR, USA) equipped with an electron backscatter diffraction (EBSD, Oxford Instruments, Abingdon, UK) detector. EBSD data were acquired via the Aztec Crystal acquisition software (Symmetry S3) under an accelerating voltage of 20 kV with a step size of 80 nm and 500 nm

    Article Title: Unsupervised multivariate analysis of multiple analysis data fusion combining hydrogen distribution and crystallographic orientation image data of vanadium alloy sample.
    Article Snippet: Without polishing, EBSD images were then obtained in the same state.Without polishing, EBSD images were then obtained in the same state.. Electron backscatter diffraction (EBSD) The vanadium samples were analyzed using a SEM (JSM-7100F, JEOL) and EBSD (Symmetry, Oxford Instruments).. The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.

    Microscopy:

    Article Title: Welding-Induced Heterogeneity Promotes Gradient Nanostructuring in Laser-Welded 304 Stainless Steel Joints.
    Article Snippet: microstructural evolution was characterized using a scanning electron microscope (SEM, Apreo 2S, Thermo Fisher Scientific, Hillsboro, OR, USA) equipped with an electron backscatter diffraction (EBSD, Oxford Instruments, Abingdon, UK) detector. EBSD data were acquired via the Aztec Crystal acquisition software (Symmetry S3) under an accelerating voltage of 20 kV with a step size of 80 nm and 500 nm

    Article Title: Unsupervised multivariate analysis of multiple analysis data fusion combining hydrogen distribution and crystallographic orientation image data of vanadium alloy sample.
    Article Snippet: Without polishing, EBSD images were then obtained in the same state.Without polishing, EBSD images were then obtained in the same state.. Electron backscatter diffraction (EBSD) The vanadium samples were analyzed using a SEM (JSM-7100F, JEOL) and EBSD (Symmetry, Oxford Instruments).. The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.

    Electron Microscopy:

    Article Title: Welding-Induced Heterogeneity Promotes Gradient Nanostructuring in Laser-Welded 304 Stainless Steel Joints.
    Article Snippet: microstructural evolution was characterized using a scanning electron microscope (SEM, Apreo 2S, Thermo Fisher Scientific, Hillsboro, OR, USA) equipped with an electron backscatter diffraction (EBSD, Oxford Instruments, Abingdon, UK) detector. EBSD data were acquired via the Aztec Crystal acquisition software (Symmetry S3) under an accelerating voltage of 20 kV with a step size of 80 nm and 500 nm

    Article Title: Unsupervised multivariate analysis of multiple analysis data fusion combining hydrogen distribution and crystallographic orientation image data of vanadium alloy sample.
    Article Snippet: Without polishing, EBSD images were then obtained in the same state.Without polishing, EBSD images were then obtained in the same state.. Electron backscatter diffraction (EBSD) The vanadium samples were analyzed using a SEM (JSM-7100F, JEOL) and EBSD (Symmetry, Oxford Instruments).. The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.

    Software:

    Article Title: Welding-Induced Heterogeneity Promotes Gradient Nanostructuring in Laser-Welded 304 Stainless Steel Joints.
    Article Snippet: microstructural evolution was characterized using a scanning electron microscope (SEM, Apreo 2S, Thermo Fisher Scientific, Hillsboro, OR, USA) equipped with an electron backscatter diffraction (EBSD, Oxford Instruments, Abingdon, UK) detector. EBSD data were acquired via the Aztec Crystal acquisition software (Symmetry S3) under an accelerating voltage of 20 kV with a step size of 80 nm and 500 nm

    Article Title: Unsupervised multivariate analysis of multiple analysis data fusion combining hydrogen distribution and crystallographic orientation image data of vanadium alloy sample.
    Article Snippet: Without polishing, EBSD images were then obtained in the same state.Without polishing, EBSD images were then obtained in the same state.. Electron backscatter diffraction (EBSD) The vanadium samples were analyzed using a SEM (JSM-7100F, JEOL) and EBSD (Symmetry, Oxford Instruments).. The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.

    Imaging:

    Article Title: Welding-Induced Heterogeneity Promotes Gradient Nanostructuring in Laser-Welded 304 Stainless Steel Joints.
    Article Snippet: microstructural evolution was characterized using a scanning electron microscope (SEM, Apreo 2S, Thermo Fisher Scientific, Hillsboro, OR, USA) equipped with an electron backscatter diffraction (EBSD, Oxford Instruments, Abingdon, UK) detector. EBSD data were acquired via the Aztec Crystal acquisition software (Symmetry S3) under an accelerating voltage of 20 kV with a step size of 80 nm and 500 nm

    Article Title: Unsupervised multivariate analysis of multiple analysis data fusion combining hydrogen distribution and crystallographic orientation image data of vanadium alloy sample.
    Article Snippet: Without polishing, EBSD images were then obtained in the same state.Without polishing, EBSD images were then obtained in the same state.. Electron backscatter diffraction (EBSD) The vanadium samples were analyzed using a SEM (JSM-7100F, JEOL) and EBSD (Symmetry, Oxford Instruments).. The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.The measurement area was 290 × 216 μm2 before hydrogen diffusion and 456 × 342 μm2 after diffusion.



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    Image Search Results


    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: