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首页> 外文期刊>Journal of the European Ceramic Society >0.6Sr 0.4Co 0.2Fe 0.8O 3-δ substrate material for oxygen separation application]]>
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0.6Sr 0.4Co 0.2Fe 0.8O 3-δ substrate material for oxygen separation application]]>

机译:<![CData行为在 0.6 SR 0.4 CE:INF PLACE =“POST “> 0.2 FE 0.8 O 3-Δ材料衬底用于氧气分离应用]]]>

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AbstractAdvanced oxygen transport membrane designs consist of a thin functional layer supported by a porous substrate material that carries mechanical loads. Creep deformation behavior is to be assessed to warrant a long-term reliable operation at elevated temperatures. Aiming towards an asymmetric composite, the current study reports and compares the creep behavior of La0.6Sr0.4Co0.2Fe0.8O3-δ(LSCF) perovskite porous substrate material with different porosity and pore structures in air for a temperature range of 800–1000?°C. A porosity and pore structure independent average stress exponent and activation energy are derived from the deformation data, both being representative for the LSCF material. To investigate the structural stability of the dense layer in an asymmetric membrane, sandwich samples of Ba0.5Sr0.5Co0.8Fe0.2O3-δ(BSCF) and La0.6Sr0.4Co0.2Fe0.8O3-δ(LSCF) with porous substrate and dense layers on both side were tested by three-point bending with respect to creep rupture behavior of the dense layer. Creep rupture cracks were observed in the tensile surface of BSCF, but not in the case of LSCF.]]>
机译:<![cdata [ 抽象 高级氧气传输膜设计由由承载机械负载的多孔基材材料支撑的薄功能层。将评估蠕变变形行为,以便在高温下进行长期可靠操作。旨在朝着不对称的复合材料,目前的研究报告并比较了LA 0.6 SR 0.4 CO 0.2 FE 0.8 O 3 -Δ/ ce:inf>(Lscf)钙钛矿多孔基材材料,其空气中的不同孔隙率和孔结构,温度范围为800-1000℃。孔隙率和孔结构独立的平均应力指数和激活能量来自变形数据,两者都是LSCF材料的代表性。为了研究致密层在不对称膜中的结构稳定性,BA 0.5 SR 0.5 CO 0.8 FE 0.2 O 3-Δ(bscf)和la 0.6 SR 0.4 CO 0.2 FE 0.8 O 3-Δ< / Ce:(LSCF)具有多孔基材和两侧的致密层,相对于致密层的蠕变破裂行为,通过三点弯曲测试。在BSCF的拉伸表面中观察到蠕变破裂裂缝,但在LSCF的情况下不观察到。 ]]>

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