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首页> 外文期刊>CERAMICS INTERNATIONAL >Electrospinning of Y2O3- and MgO-stabilized zirconia nanofibers and characterization of the evolving phase composition and morphology during thermal treatment
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Electrospinning of Y2O3- and MgO-stabilized zirconia nanofibers and characterization of the evolving phase composition and morphology during thermal treatment

机译:Y2O3和MgO稳定的氧化锆纳米纤维的静电纺丝及热处理过程中不断的相位成分和形态的表征

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摘要

The current paper focuses on the fabrication of yttria and magnesia stabilized zirconia nanofibers via electrospinning from zirconyl chloride octahydrate and polyvinylpyrrolidone precursors with minor additions of yttrium nitrate hexahydrate (3 mol.%) or magnesium nitrate hexahydrate (10 mol.%). The precursor materials were dissolved in an ethanol-water mixture in a ratio of 75:25. After successful fiber preparation, the thermal decomposition behavior of the starting materials and the subsequent phase evolution at elevated temperatures were studied. Pure tetragonal zirconia nanofibers were obtained for the composition stabilized with 3 mol.% yttria when the thermal treatment was conducted with a heating rate of 10 K/min up to 1100 degrees C. In future research work, these tetragonal zirconia nanofibers will be used as reinforcing material in metal matrix composites based on metastable austenitic steel. The combination of the TRIP/TWIP-effect in the steel matrix with the stress-assisted tetragonal to monoclinic phase transformation in the tetragonal stabilized zirconia will lead to a composite material with outstanding mechanical properties.
机译:目前的纸张专注于通过从氧化锆氯化氢萘磺酸盐和聚乙烯吡咯烷酮前体的静电纺丝通过从氧化钇六水合物(3mol。%)或硝酸镁六水合物(10mol.%)的氧化钇烯烃和聚乙烯醇吡咯烷酮前体的制备。将前体材料以75:25的比例溶解在乙醇 - 水混合物中。在成功的纤维制剂后,研究了起始材料的热分解行为和在升高的温度下的后续相位演化。得到纯四方氧化锆纳米纤维,用于用3摩尔稳定的组合物稳定。当在未来的研究工作中以10k / min的加热速率进行热处理时,ytTRIa稳定。在未来的研究工作中,这些四方氧化锆纳米纤维将被用作基于亚稳奥氏体钢的金属基复合材料中加固材料。在四边形稳定的氧化锆中,钢基质中的跳闸基质与钢基体与单斜相转化的钢基质的组合将导致具有突出机械性能的复合材料。

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