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IMPROVEMENT IN THE CHARACTERIZATION OF THE 2099 Al-Li ALLOY BY FE-SEM

机译:FE-SEM将2099 Al-Li合金表征的改进

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This paper describes how state-of-the-art Field-Emission Scanning Electron Microscopy (FESEM) can contribute to the characterization of the 2099 aluminum-lithium alloy, and metallic alloys in general. Investigations were carried out on bulk and thinned samples. BSE imaging at 3 kV and STEM imaging at 30 kV along with highly efficient microanalysis permitted to correlate experimental and expected structures. Although our results confirm previous studies, this work points out possible substitutions of Mg and Zn with Li, Al and Cu in the T1 precipitates. Zinc and magnesium are also present in "rice grain" shaped precipitates at the grain boundaries. The versatility of the FE-SEM is highlighted in that it can provide information at the macro and micro scales with relevant details. Its ability to probe the distribution of precipitates from nano-to micro-sizes throughout the matrix makes Field-Emission Scanning Electron Microscopy a suitable technique for the characterization of metallic alloys.
机译:本文描述的国家的最先进的场致发射扫描电子显微镜(FESEM)如何可以向2099铝 - 锂合金的一般表征,和金属合金。调查是在体积和薄样品进行。在3千伏和STEM成像BSE成像在30kV与高效微量分析允许相关联的实验和预期的结构。虽然我们的研究结果证实了以前的研究,这个工作点出李,铝和铜在T1沉淀镁,锌的可能的替换。锌和镁也存在于“米粒”在晶粒边界处形沉淀。在FE-SEM的通用性,它可以在与相关细节宏观和微观尺度提供信息突出显示。其探测析出物的从纳米到整个基体的微尺寸的分布能力使得场致发射扫描电子显微镜对金属合金的特征的合适技术。

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