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首页> 外文期刊>Journal of Materials Science >Multiscale characterization of nanostructured Al-Si-Zr alloys obtained by rapid solidification method
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Multiscale characterization of nanostructured Al-Si-Zr alloys obtained by rapid solidification method

机译:快速凝固法获得的纳米结构Al-Si-Zr合金的多尺度表征

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Properties of engineering metallic alloys (e.g., fracture toughness, corrosion resistance) are often limited by the presence of primary intermetallic particles which form during conventional solidification. Rapid solidification brings about much more homogenous amorphous and/or nanocrystalline structure with reduced density of primary particles. Rapidly solidified thin ribbons obtained by melt spinning are usually considered as intrinsically homogenous. However, due to different cooling conditions at the wheel surface and on the side exposed to the ambient environment, structure of such ribbons may vary significantly across its thickness. The materials studied in this study were 30-40 μm thickness ribbons of nanocrystalline hyper- and hypo-eutectic Al-Si-Zr alloys produced by melt-spinning method. Transmission electron microscopy and high resolution scanning transmission electron microscopy were used to characterize the structure homogeneity across the ribbons. Thin foils for transmission observations were prepared by focused ion beam system. Microstructural observations confirmed nanocrystalline character of Al-Si-Zr alloys. However, these observations revealed inhomogeneity of the structure across the ribbon width.
机译:工程金属合金的性能(例如,断裂韧性,耐腐蚀性)通常受到在常规凝固过程中形成的初级金属间颗粒的存在的限制。快速固化带来了均匀得多的无定形和/或纳米晶体结构,并且初级颗粒的密度降低了。通常认为通过熔融纺丝获得的快速凝固的薄带本质上是均匀的。然而,由于轮表面和暴露于周围环境的一侧上的冷却条件不同,这种带的结构可能在其整个厚度上变化很大。在这项研究中研究的材料是通过熔融纺丝法生产的30-40μm厚的纳米晶过共晶和亚共晶Al-Si-Zr合金薄带。透射电子显微镜和高分辨率扫描透射电子显微镜用于表征带之间的结构均匀性。通过聚焦离子束系统制备用于透射观察的薄箔。显微组织观察证实了Al-Si-Zr合金的纳米晶体特性。但是,这些观察结果表明,碳带宽度上的结构是不均匀的。

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