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- W4281781130 endingPage "128601" @default.
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- W4281781130 abstract "A two-step severe shot peening (SSP) method was designed to investigate the softening mechanism of nanostructured Mg-8Gd-3Y (GW83) alloys and its effects on the surface characteristics of the deformation layer. The experimental results indicated that a gradient deformation layer with nanocrystalline (50–100 nm) near the surface layer was fabricated by single SSP (0.54 mmN). The corresponding formation mechanism of nanocrystalline was mainly owing to continuous dynamic recrystallization (cDRX). By applying the two-step SSP (0.54 + 0.23 mmN) treatment, softening occurred near the surface layer (<50 μm) due to the occurrence of partial discontinuous dynamic recrystallization (dDRX). The reason for dDRX behavior during SSP treatment resulted from the combined effects of high-level stored strain energy and heat production. This softening behavior was characterized by the increase of domain size, the slight enhancement of basal texture, and the decrease of dislocation density and microhardness . Therefore, appropriate SP parameters should be selected to avoid material softening when obtaining nanocrystalline Mg alloys. • SSP developed nanostructured deformation layer and induced high-level CRS. • Two-step SSP method was designed to investigate the work softening mechanism in nanostructured GW83 alloy. • Partial dDRX behavior should be responsible for the softening phenomenon. • The softening phenomenon is characterized by the increase of domain size, the slight enhancement of basal texture, and the decrease of dislocation density." @default.
- W4281781130 created "2022-06-13" @default.
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- W4281781130 date "2022-07-01" @default.
- W4281781130 modified "2023-10-06" @default.
- W4281781130 title "Work softening mechanism and microstructure evolution of nanostructured Mg-8Gd-3Y alloy during severe shot peening" @default.
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- W4281781130 doi "https://doi.org/10.1016/j.surfcoat.2022.128601" @default.
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