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首页> 外文期刊>Journal of Applied Physics >Correlation between glass-forming ability, thermal stability, and crystallization kinetics of Cu-Zr-Ag metallic glasses
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Correlation between glass-forming ability, thermal stability, and crystallization kinetics of Cu-Zr-Ag metallic glasses

机译:Cu-Zr-Ag金属玻璃的玻璃形成能力,热稳定性和结晶动力学之间的相关性

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摘要

The glass-forming ability (GFA) of the Cu-Zr-Ag system is evaluated based on the large amount of literature data available and discussed in the frame of a predictive amorphization criterion which combines topological instability and electronic criteria. The correlation between GFA, thermal stability, and crystallization kinetics of (Cu0.5Zr0.5)100-xAgx (x = 0, 2, 6, and 10) metallic glasses is further investigated. The enhancement of the GFA of the alloys and the thermal stability/fragility of the supercooled liquid can be traced back to a large size effect/volume mismatch and electronic effects. However, the apparent activation energy of crystallization decreases with increasing Ag content in the alloys which may be due to a nanoscale microstructural heterogeneity induced by the Ag addition. At a certain Ag content, a small amount of AgZr crystals precipitate together with Cu10Zr7 and CuZr2 and the crystallization mechanism changes from interface-controlled one-dimensional growth to three-dimensional growth with different nucleation rates.
机译:基于大量可用的文献数据,对Cu-Zr-Ag系统的玻璃形成能力(GFA)进行了评估,并在结合拓扑不稳定和电子准则的预测非晶化准则框架内进行了讨论。进一步研究了(Cu0.5Zr0.5)100-xAgx(x = 0、2、6和10)金属玻璃的GFA,热稳定性和结晶动力学之间的关系。合金的GFA的提高和过冷液体的热稳定性/易碎性可以追溯到大尺寸效应/体积失配和电子效应。但是,随着合金中Ag含量的增加,结晶的表观活化能降低,这可能是由于Ag添加引起的纳米级微观结构异质性。在一定的Ag含量下,少量的AgZr晶体与Cu10Zr7和CuZr2一起沉淀,其结晶机理从界面控制的一维生长转变为具有不同成核速率的三维生长。

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