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- W2127744892 abstract "Magnesium alloys are conventionally formed at the elevated temperatures. The thermally improved formability is sensitive to the temperature and strain rate. Due to limitations in forming speeds, tooling strength and narrow processing windows, complex thin walled parts cannot be made by traditional warm drawing or hot forging processes. A hybrid process, which is based on the deformation mechanism of magnesium alloys at the elevated temperature, is proposed that combines warm drawing and hot forging modes to produce an aggressive geometry at acceptable forming speed. The process parameters, such as temperatures, forming speeds etc. are determined by the FEM modeling and simulation. Sensitivity analysis under the constraint of forming limits of Mg alloy sheet material and strength of tooling material is carried out. The proposed approach is demonstrated on a conical geometry with thin walls and with bottom features. Results show that designed geometry can be formed in about 8 seconds, this cannot be formed by conventional forging while around 1000s is required for warm drawing. This process is being further investigated through controlled experiments." @default.
- W2127744892 created "2016-06-24" @default.
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- W2127744892 date "2005-01-01" @default.
- W2127744892 modified "2023-09-23" @default.
- W2127744892 title "Material Behavior Based Hybrid Process for Sheet Draw-Forging Thin Walled Magnesium Alloys" @default.
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- W2127744892 doi "https://doi.org/10.1063/1.2011290" @default.
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