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Characterization of Precipitation in Al-Li Alloy AA2195 by means of Atom Probe Tomography and Transmission Electron Microscopy

机译:原子探针层析成像和透射电子显微镜表征铝锂合金AA2195中的析出

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The microstructure of the commercial alloy AA2195 was investigated on the nanoscale after conducting T8 tempering. This particular thermomechanical treatment of the specimen resulted in the formation of platelet-shapedT1Al2CuLi/θ′Al2Cuprecipitates within the Al matrix. The electrochemically prepared samples were analyzed by scanning transmission electron microscopy and atom probe tomography for chemical mapping. Theθ′platelets, which are less than 2 nm thick, have the stoichiometric composition consistent with the expected Al2Cu equilibrium composition. Additionally, the Li distribution inside theθ′platelets was found to equal the same value as in the matrix. The equally thinT1platelet deviates from the formula (Al2CuLi) in its stoichiometry and shows Mg enrichment inside the platelet without any indication of a higher segregation level at the precipitate/matrix interface. The deviation from the (Al2CuLi) stoichiometry cannot be simply interpreted as a consequence of artifacts when measuring the Cu and Li concentrations inside theT1platelet. The results show rather a strong hint for a true lower Li and Cu contents, hence supporting reasonably the hypothesis that the real chemical composition for the thinT1platelet in the T8 tempering condition differs from the equilibrium composition of the thermodynamic stable bulk phase.
机译:T8回火后,在纳米级研究了商品合金AA2195的微观结构。样品的这种特殊的热机械处理导致在Al基体内形成了片状的T1Al2CuLi /θ'Al2Cu沉淀。通过扫描透射电子显微镜和原子探针层析成像对化学制备的样品进行分析,以进行化学作图。厚度小于2 nm的θ'血小板的化学计量组成与预期的Al2Cu平衡组成一致。另外,发现θ′血小板内的Li分布与矩阵中的Li值相等。相同厚度的T1血小板在化学计量上与式(Al2CuLi)背离,并且显示出血小板内部Mg富集,而没有任何迹象表明在沉淀物/基质界面处有较高的偏析水平。当测量T1血小板内的Cu和Li浓度时,(Al2CuLi)化学计量的偏差不能简单地解释为人为因素的结果。结果表明,确实存在较低的Li和Cu含量的强烈暗示,因此可以合理地支持以下假设:在T8回火条件下,薄T1血小板的实际化学组成不同于热力学稳定的本体相的平衡组成。

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