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Enhanced grain refinement due to deformation-induced precipitation during ambient-temperature severe plastic deformation of an Al–7Si alloy

机译:Al–7%Si合金在环境温度下严重的塑性变形过程中由于变形引起的析出而增强了晶粒细化

摘要

An Al–7wt%Si alloy was prepared by casting. Billets from the as-cast ingot were annealed at 540 °C and then either quenched or furnace cooled to control the Si concentration in the primary Al constituent. Subsequently, as-cast billets as well as billets in the annealed conditions were subjected to ambient temperature severe plastic deformation (SPD) by equal-channel angular pressing (ECAP). Microstructures were evaluated by optical, scanning electron, and transmission electron microscopy methods and Vickers hardness data were also acquired. Grain refinement and hardening in the primary Al by ambient temperature ECAP processing are influenced by deformation-induced precipitation of Si from a supersaturated solid solution. The finest grain size and highest hardness are associated with the greatest initial supersaturation of Si.
机译:通过铸造制备了Al-7wt%Si合金。将铸锭的坯料在540°C退火,然后淬火或炉冷以控制主要Al成分中的Si浓度。随后,通过等通道角挤压(ECAP)对铸坯以及退火条件下的坯料进行环境温度严重塑性变形(SPD)。通过光学,扫描电子和透射电子显微镜方法评估微观结构,并获得维氏硬度数据。通过环境温度ECAP处理对初生Al进行晶粒细化和硬化会受到变形诱导的Si从过饱和固溶体中沉淀的影响。最小的晶粒尺寸和最高的硬度与最大的Si初始过饱和有关。

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