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Internal stresses and textures of nanostructured alumina scales growing on polycrystalline Fe(3)Al alloy

机译:在多晶Fe(3)Al合金上生长的纳米结构氧化铝鳞的内部应力和织构

摘要

The evolution of internal stresses in oxide scales growing on polycrystalline Fe(3)Al alloy in atmospheric air at 700 degrees C was determined using in situ energy-dispersive synchrotron X-ray diffraction. Ex situ texture analyses were performed after 5 h of oxidation at 700 degrees C. Under these conditions, the oxide-scale thickness, as determined by X-ray photoelectron spectroscopy, lies between 80 and 100 nm. The main phase present in the oxide scales is alpha-Al(2)O(3), with minor quantities of metastable theta-Al(2)O(3) detected in the first minutes of oxidation, as well as alpha-Fe(2)O(3). alpha-Al(2)O(3) grows with a weak (0001) fiber texture in the normal direction. During the initial stages of oxidation the scale develops, increasing levels of compressive stresses which later evolve to a steady state condition situated around -300 MPa. (C) 2010 International Centre for Diffraction Data. [DOI: 10.1154/1.3402764]
机译:使用原位能量色散同步加速器X射线衍射确定了在大气中700摄氏度的多晶Fe(3)Al合金上生长的氧化皮中的内部应力演变。在700摄氏度氧化5小时后,进行了异位织构分析。在这些条件下,通过X射线光电子能谱测定的氧化皮厚度在80到100 nm之间。氧化皮中的主要相为α-Al(2)O(3),在氧化的最初几分钟内检测到少量的亚稳态theta-Al(2)O(3),以及α-Fe( 2)O(3)。 alpha-Al(2)O(3)在法线方向上生长时具有较弱的(0001)纤维纹理。在氧化的初始阶段,水垢发展,压应力水平增加,此后逐渐发展成处于-300 MPa附近的稳态条件。 (C)2010年国际衍射数据中心。 [DOI:10.1154 / 1.3402764]

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