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首页> 外文期刊>Solid state ionics >Porous Fe21Cr7Al1Mo0.5Y metal supports for oxygen transport membranes: Thermo-mechanical properties, sintering and corrosion behaviour
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Porous Fe21Cr7Al1Mo0.5Y metal supports for oxygen transport membranes: Thermo-mechanical properties, sintering and corrosion behaviour

机译:用于氧气传输膜的多孔Fe21Cr7Al1Mo0.5Y金属载体:热机械性能,烧结和腐蚀行为

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摘要

An Fe21Cr7Al1Mo0.5Y alumina-forming stainless steel is designed and evaluated as a material for porous supports for oxygen transport membranes. The thermal expansion coefficient, elastic modulus and creep rates of the alloy are presented. The microstructure, porosity and pre-oxidation conditions are optimised simultaneously in-situ during sintering by controlling the growth rate of the oxide scale. Oxidation of metal supports with 20-40% porosity at 850 C and oxygen partial pressure of 10~(- 11) kPa showed sub-parabolic kinetics and stability over 3000 h. The FeCrAl steel shows vastly superior oxidation resistance compared with an FeCr steel of similar composition and porosity. Modelling of the alloy lifetime as a function of surface area and Al-content was performed, and lifetimes over 30 000 h are predicted for a metal support with 30% porosity operating at a temperature of 750 C, where the oxidation and creep rates are sufficiently low. Ceramic interlayers with graded porosity and pore-size were applied and co-fired with the metal supports, producing substrates that were shown to be viable for a 3 μm dense Ce _(0.8)Gd_(0.2)O_(1.9 - δ) oxygen transport membrane deposited using sputtering.
机译:设计并评估了Fe21Cr7Al1Mo0.5Y氧化铝形成不锈钢,作为用于氧气传输膜的多孔载体的材料。给出了合金的热膨胀系数,弹性模量和蠕变速率。通过控制氧化皮的生长速度,同时在烧结过程中同时优化了微观结构,孔隙率和预氧化条件。在850℃时,孔隙率为20-40%,氧分压为10〜(-11)kPa的金属载体的氧化表现出抛物线动力学和超过3000h的稳定性。与组成和孔隙率相似的FeCr钢相比,FeCrAl钢显示出极好的抗氧化性。进行了合金寿命随表面积和Al含量变化的建模,对于在750°C的温度下工作且孔隙率30%的金属载体,其氧化和蠕变速率足够高,其寿命预计超过30,000小时低。涂覆具有一定孔隙度和孔径的陶瓷中间层,并与金属载体共烧,从而生产出可用于3μm密度Ce _(0.8)Gd_(0.2)O_(1.9-δ)氧传输的基底用溅射沉积膜。

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