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Effect of thermal oxidation on surface chemistry and elemental segregation of Al-Cu-Li alloy

机译:热氧化对Al-Cu-Li合金表面化学和元素偏析的影响

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The thermal stability of Al-Cu-Li alloys is critical for the extreme working conditions in the aircraft industry. The initial stages of thermal oxidation of an industrial AA 2050-T8 Al-Cu-Li alloy were investigated by in situ XPS and ToF-SIMS.Annealing the sample at 200 degrees C leads to a surface enrichment in metallic Li and Ag. When exposed to oxygen at low pressure (P-O2 10(-6) mbar) a mixed Li-Al oxide layer is formed. Photoemission intensities (recorded at 45 degrees and 90 degrees relative to the surface) are consistent with the formation of a continuous oxide layer for oxygen exposure from 0 to 5000 langmuirs (L). Assuming a homogeneous composition of the oxide layer, its thickness was 9 +/- 1 angstrom at 5000 L. The relative content of Li and Al in the oxide layer evolves from an initial value of 50% to stabilize at 70% of Li above 100 L of oxygen exposure. Simultaneously, the content of Li at the alloy substrate surface is reduced from 10% to 0%. Moreover, specific segregation sites are evidenced by ToF-SIMS three-dimensional chemical mapping. For Li, a homogenous surface distribution while for Mg the accumulation at the grain boundaries were observed. The segregation of Ag at the oxide/alloy interface was confirmed by ToF-SIMS ion depth profiles.
机译:Al-Cu-Li合金的热稳定性对于飞机行业中的极端工作条件至关重要。通过原位XPS和TOF-SIMS研究了工业AA 2050-T8 Al-Li-Li合金的热氧化的初始阶段。200摄氏度的样品导致金属Li和Ag的表面富集。当在低压下暴露于氧气(P-O 2 <10(-6)毫巴)时,形成混合的Li-Al氧化物层。光曝光强度(以45度和90度拍摄相对于表面)是一致的,形成从0到5000 Langmuirs(L)的氧暴露的连续氧化物层。假设氧化物层的均匀组合物,其厚度为5000L。氧化物层中Li和Al的相对含量从初始值50%的初始值稳定在100以上100% l氧气暴露。同时,合金基材表面的Li含量从10%降至0%。此外,通过TOF-SIMS三维化学映射证明了特定的分离位点。对于Li,均匀的表面分布而用于Mg晶界在晶界处的积聚。通过TOF-SIMS离子深度型材证实了氧化物/合金界面处的Ag的偏析。

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