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- W3003670036 abstract "Abstract Gradient materials have gained tremendous attention due to their unprecedented mechanical performance. Here, a scanning electron microscopy (SEM)-based approach is reported to characterize the microstructural evolution in a gradient high-entropy alloy (HEA) produced by the shot peening treatment, which involves electron channeling contrast imaging (ECCI) and electron backscatter diffraction (EBSD) techniques. The gradient distributions of nanograins, nanotwins, and dislocations from the surface to the center of the HEA were revealed in detail. The present approach shows comparable resolution to traditional bright field transmission electron microscopy (TEM) imaging, yet with far higher efficiency and affordability. More intriguingly, we uncovered the dislocation substructures and the corresponding geometrically necessary dislocation (GND) density distribution simultaneously below the micrometer scale. The strengthening effect resulted from the change of GND density accounts for the variation of the hardness at the depth larger than 75 μm. The present study provides a route to better understanding the mechanical properties and deformation mechanisms of gradient materials." @default.
- W3003670036 created "2020-02-07" @default.
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- W3003670036 date "2020-03-01" @default.
- W3003670036 modified "2023-10-05" @default.
- W3003670036 title "An SEM-based approach to characterize the microstructural evolution in a gradient CoCrFeNiMo0.15 high-entropy alloy" @default.
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- W3003670036 doi "https://doi.org/10.1016/j.matchar.2020.110169" @default.
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