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- W1557985890 abstract "Abstract Friction Stir Processing (FSP) has gained important relevance in recent years as a very useful tool to produce ultra fine grain (UFG) microstructures (less than 500 nm) in cast and wrought magnesium and aluminum alloys, achieving super-plastic behavior. In this work, the influence of initial material condition and cooling rate on microstructure (in particular in the final grain size) and hardness of an AM60-6 mm thick magnesium alloy was analyzed. A MP159 fix pin tool for 3 mm butt joints was used. FSP tests were conducted on as-cast and solubilized plates. Particular attention was paid to the level of grain refinement when a cooper backing plate and a cooling agent are used. A sub-micron grain size was obtained when these vigorous cooling systems were employed. Introduction Superplastic materials could be deformed extensively without fracture, up to 8000% of its original form [1]. Because of their potential regarding economic and energy savings, the study and development of these materials is considered as strategic research in advanced countries. Superplasticity is a phenomenon considered slow because it occurs normally in the range of strain rates of 10" @default.
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- W1557985890 date "2011-02-28" @default.
- W1557985890 modified "2023-10-17" @default.
- W1557985890 title "Obtaining Sub-Micron Grain Size in AM60 Magnesium Alloy Using Friction Stir Processing" @default.
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- W1557985890 doi "https://doi.org/10.1002/9781118062302.ch35" @default.
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