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- W4290803712 abstract "In the present investigation, multidirectional forging (MDF) was carried out at cryogenic temperature on solution treated Al-Mg alloys (AA 5083) to observe ultrafine grained structure at various strain levels up to 4 cycles and to the cumulative strain of 2.4. Microstructural characterization of deformed material at different strain values was quantified using an optical microscope and transmission electron microscope. It was observed that MDF developed ultrafine grains (~300 nm) and full of dislocation cells structure along with subgrains. Mechanical testing showed that increasing the stain resulted in increased yield strength and hardness values attributed to accumulation of high density of dislocations owing to effective suppression of dynamic recovery and formation of equiaxed sub-grain structure with deformation bands. Corrosion behavior was studied using a cyclic polarization test and showed lower values of corrosion current density (I corr = 23.53 nA/cm 2 ) for MDF samples indicating resistance to pitting corrosion than the received samples (I corr = 76.81 nA/cm 2 ). Results of cryoforged samples when compared with cryorolled samples of equivalent accumulated strain has shown nearly similar trends." @default.
- W4290803712 created "2022-08-12" @default.
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- W4290803712 date "2022-07-28" @default.
- W4290803712 modified "2023-09-27" @default.
- W4290803712 title "Mechanical and Corrosion Behavior of Al 5083 Alloy Processed by Multi Directional Forging at Cryogenic Temperature" @default.
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- W4290803712 doi "https://doi.org/10.1002/9781119755074.ch37" @default.
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