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Isothermal oxidation behavior of a sheet alloy of Fe-40 at. percent Al at temperatures between 1073 and 1473 K

机译:Fe-40at合金的等温氧化行为。在1073和1473 K之间的温度下的铝百分比

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摘要

A sheet Fe-40 at. percent Al alloy with 200 mum thickness was oxidized isothermally in air at temperatures between 1073 and 1473 K for up to 608.4 ks. The oxidation behavior was classified into three temperature ranges. At temperatures below 1223 K a mixture of alpha- and theta-Al_2O_3 grew fast, followed by slow oxidation with the formation of only alpha- Al_2O_3. The initial rapid oxidation is due to the formation of theta- Al_2O_3. Between 1273 and 1323 K the oxidation obeyed a parabolic rate law over the whole oxidation time with the formation of alpha- Al_2O_3 scale, except for the very initial stage of oxidation up to 3.6 ks. At temperatures above 1423 K the parabolic rate constants tended to decrease with oxidation time, while the oxide grain size of the columnar structure increased by 34 times. The change in the parabolic rate constants with time at 1473 K was reasonably well explained using the oxygen inward diffusion model along the grain boundary with a hypothetical width of 2 nm. The Fe-40Al showed the lowest oxidation rate and the activation energies for a parabolic Al_2O_3 growth are 422 kJ/mol above 1273 K and 241 kJ/mol below 1223 K. Oxide scale exfoliation was not observed for the Fe-40Al oxidized isothermally in air at the experimental temperatures here.
机译:一片Fe-40 at。在1073和1473 K之间的温度下,在空气中等温氧化200%厚度的100%铝合金达608.4 ks。氧化行为分为三个温度范围。在低于1223 K的温度下,α-和theta-Al_2O_3的混合物快速生长,然后缓慢氧化,仅形成α-Al_2O_3。最初的快速氧化是由于theta-Al_2O_3的形成。在1273至1323 K之间,氧化过程在整个氧化时间内都遵循抛物线速率定律,形成了α-Al_2O_3氧化皮,但最开始的氧化阶段除外,直至3.6 ks。在高于1423 K的温度下,抛物线速率常数趋于随氧化时间而降低,而柱状结构的氧化物晶粒尺寸则增加了34倍。使用氧向内扩散模型沿着假设边界为2 nm的晶界使用氧向内扩散模型,可以很好地解释1473 K时抛物线速率常数随时间的变化。 Fe-40Al表现出最低的氧化速率,抛物线型Al_2O_3生长的活化能在1273 K以上时为422 kJ / mol,在1223 K以下时为241 kJ / mol。在空气中等温氧化的Fe-40Al未观察到氧化皮剥落在这里的实验温度下

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