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The influence of Sc on thermal stability of a nanocrystalline Al-Mg alloy processed by cryogenic ball milling

机译:Sc对低温球磨纳米纳米Al-Mg合金热稳定性的影响

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摘要

The microstructural evolution during annealing of a cryogenically ball-milled Al-7.5Mg-0.3Sc (in wt pct) was examined using differential scanning calorimetry and transmission electron microscopy (TEM). The as-milled alloy was a supersaturated fcc solid solution with an average grain size of ∼25 nm and heterogeneous grain morphologies and size distributions. Calorimetric measurements at a constant heating rate of 32 K/min indicated two exothermic events in association with recovery from 100 °C to 240 °C and recrystallization from 300 °C to 450 °C. Prior to recrystallization, the precipitation of Al3Sc may occur at low annealing temperatures producing a nonuniform dispersion of approximately spherical particles with diameters of 4 to 5 nm. Recrystallization gave rise to heterogeneous microstructures with bimodal grain size distributions, which may result from the heterogeneity of microstructure in the as-milled state. The heterogeneous microstructures of the recrystallized Al-Mg-Sc alloy were similar to those observed in the recrystallized Sc-free Al-Mg alloy.
机译:使用差示扫描量热法和透射电子显微镜(TEM)检查了低温球磨Al-7.5Mg-0.3Sc(按重量百分比)退火过程中的微观结构演变。研磨后的合金是过饱和的fcc固溶体,平均晶粒尺寸约为25 nm,且晶粒形态和尺寸分布不均匀。以32 K / min的恒定加热速率进行的量热法测量表明,有两个放热事件,与从100°C到240°C的恢复以及从300°C到450°C的重结晶有关。在重结晶之前,Al 3 S c的沉淀可能在低退火温度下发生,从而产生直径为4至5 nm的近似球形颗粒的不均匀分散。再结晶产生具有双峰粒度分布的异质微观结构,这可能是由于在研磨状态下微观结构的异质性造成的。再结晶的Al-Mg-Sc合金的异质组织与在再结晶的无Sc的Al-Mg合金中观察到的相似。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第6期|1587-1594|共8页
  • 作者单位

    Edwards Lifesciences Corporation 92614 Irvine CA;

    the Department of Materials Science University of Southern California 90089-0241 Los Angeles CA;

    the Department of Materials Science University of Southern California 90089-0241 Los Angeles CA;

    the Department of Chemical Engineering and Materials Science University of California at Davis 95616-5294 Davis CA;

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