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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Nanostructure controlling in Zr-based metallic glasses using icosahedral local structure
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Nanostructure controlling in Zr-based metallic glasses using icosahedral local structure

机译:使用二十面体局部结构控制Zr基金属玻璃的纳米结构

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摘要

Glass-nano(quasi)crystal composite materials based on Zr-Al-Ni-Cu metallic glasses have been synthesized by controlling the nucleation and growth rates of the precipitated phase correlated with a unique icosahedral local structure. It is well known that the Zr_(65)Al_(7.5)Ni_(10)Cu_(17.5) metallic glass has a high glass-forming ability (GFA), which enables us to produce the glassy sample with a bulky shape. Controlling a substitution of QC-forming elements such as noble metals with Cu and annealing condition, the nanoscale icosahedral quasicrystalline phase (I-phase) with various grain sizes and nucleus densities can be formed. Moreover, we have succeeded to control the nano-QC phase nucleation by changing the atmosphere pressure during casting, which results in the formation of new bulk metallic glasses (BMGs). These nanoscale structure and nucleation controlling techniques in BMGs bring a significant improvement of mechanical properties such as high strength and good ductility.
机译:通过控制与独特的二十面体局部结构相关的析出相的形核和生长速率,已经合成了基于Zr-Al-Ni-Cu金属玻璃的玻璃-纳米(准)晶体复合材料。众所周知,Zr_(65)Al_(7.5)Ni_(10)Cu_(17.5)金属玻璃具有高的玻璃形成能力(GFA),这使我们能够生产具有大体积形状的玻璃状样品。通过控制铜等贵金属的QC形成元素的置换和退火条件,可以形成具有各种晶粒尺寸和晶核密度的纳米二十面体准晶相(I相)。此外,我们已经成功地通过在铸造过程中改变气压来控制纳米QC相成核,从而形成了新的块状金属玻璃(BMG)。 BMG中的这些纳米级结构和成核控制技术极大地改善了机械性能,例如高强度和良好的延展性。

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