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High-temperature oxidation behaviors of Fe-Cr-Al bulk and powder-sintered materials

机译:Fe-Cr-Al块状和粉末烧结材料的高温氧化行为

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In this study, cast bulk specimens and powder sintered specimens were produced from a Fe-22% Cr-5.8% Al alloy, which has been drawing industrial attention for its outstanding high-thermal and oxidation resistance as well as for its applicability as a filter and support material. The high-temperature oxidation behaviors of the specimens were compared and analyzed. Two types of specimens were subjected to 24-hour isothermal oxidation (temperatures of 900 °C, 1000 °C, and 1100 °C and a gas atmosphere of 79% N2+21% O2) to understand their high-temperature oxidation properties. The oxidized specimens were examined via X-ray, SEM, FE-SEM, and EPMA for microstructure and oxide analyses. The results of the oxidation tests showed that both bulk and powder-sintered specimens gained weight as temperature increased, with the powder sintered specimens gaining far more weight than the bulk specimens. As the temperature increased, the bulk specimens showed sequential formation of Al 2 O3, Cr2O3, and Fe3O4 oxide layers. The stable Al2O3 on the surface of the bulk specimens was found to play a role in arresting the rapid growth of oxide layers. In the powder-sintered specimens, however, the internal diffusion of O2 easily took place along the powder interfaces. As a result, far more oxidation occurred in the powder-sintered specimens than in the bulk specimens. Cracks and disintegration of the oxide layers were also found to have occurred as the temperature increased. The high-temperature oxidation mechanisms of bulk and powder-sintered materials in relation to temperature increase are further discussed.
机译:在这项研究中,铸造的散装试样和粉末烧结试样是由Fe-22%Cr-5.8%铝合金制成的,由于其出色的高耐热性和抗氧化性以及作为过滤器的适用性而受到了工业的关注。和支持材料。比较并分析了样品的高温氧化行为。对两种类型的样品进行24小时等温氧化(温度分别为900°C,1000°C和1100°C,气体气氛为79%N 2 + 21%O 2 )了解它们的高温氧化性能。通过X射线,SEM,FE-SEM和EPMA检查氧化后的样品的微观结构和氧化物分析。氧化测试的结果表明,随着温度的升高,散装和粉末烧结的试样都增加了重量,而散装粉末的烧结试样的重量要远大于散装的试样。随着温度的升高,大块试样依次形成Al 2 O 3 ,Cr 2 O 3 ,和Fe 3 O 4 氧化物层。发现在大块试样表面上稳定的Al 2 O 3 在阻止氧化物层的快速生长中起作用。然而,在粉末烧结样品中,O 2 的内部扩散很容易沿着粉末界面发生。结果,与散装试样相比,粉末烧结试样中发生的氧化更多。还发现随着温度的升高也发生了氧化物层的破裂和崩解。进一步讨论了散装和粉末烧结材料的高温氧化机理与温度升高的关系。

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