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PHASES IN AS-SPUN AND AGED BINARY ALUMINIUM-LITHIUM RIBBONS

机译:快速和老化的二元铝锂锂中的相

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As-spun aluminium-lithium ribbons, containing up to 10 wt% Li, and an Al-1.79 wt% Li ribbon aged at different temperatures (room temperature, 66, 175 and 200 degrees C) were investigated by transmission electron microscopy (TEM) and microhardness testing. It was found that the metastable phase Al3Li (delta') did not form either in the as-cast ribbons containing less than 1.79 wt % Li or in the featureless zone of Li-rich ribbons (Li content >3wt%) but it did form, as the stable phase AlLi (delta), in the segregated zone of the later ribbons. The study of the early stage of precipitation showed that the mechanism of formation of delta' depended on the ageing temperature. At a low temperature (66 degrees C), the delta' phase occurred by homogeneous spinodal decomposition. Whereas, it formed by heterogeneous nucleation at higher temperatures (175 and 200 degrees C). These results are consistent with the presence of a spinodal curve within the miscibility gap (alpha + delta'). All investigations performed both on the as-cast and aged ribbons did not reveal any evidence for the formation of G.P. zones. It was also observed in this study that contamination of aluminium-lithium ribbons by impurities such as O-2 and CO2 could alter the precipitation process and lead to the formation of lithium carbonate. [References: 29]
机译:通过透射电子显微镜(TEM)研究了初生铝锂锂带,其中包含高达10 wt%的Li和在不同温度(室温,66、175和200摄氏度)下老化的Al-1.79 wt%的Li带。和显微硬度测试。发现在含有少于1.79 wt%Li的铸态带中或在富含Li的带的无特征区域(Li含量> 3wt%)中都没有形成亚稳态相Al3Li(δ')。 ,作为稳定相AlLi(δ),位于后面的碳带的隔离带中。对降水早期的研究表明,δ'的形成机理取决于老化温度。在低温(66摄氏度)下,δ相通过均匀的旋节线分解发生。然而,它是在较高温度(175和200摄氏度)下通过异相成核形成的。这些结果与在可混溶间隙(α+δ')内存在旋节线曲线一致。在铸态带和老化带上进行的所有调查均未发现任何形成G.P.的证据。区域。在这项研究中还观察到,O-2和CO2等杂质污染铝锂带可能会改变沉淀过程并导致碳酸锂的形成。 [参考:29]

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