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首页> 外文期刊>Journal of electroceramics >Phase stability and oxygen non-stoichiometry of Gd-doped ceria during sintering in reducing atmosphere
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Phase stability and oxygen non-stoichiometry of Gd-doped ceria during sintering in reducing atmosphere

机译:还原气氛下烧结G掺杂二氧化铈的相稳定性和氧非化学计量

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Firing of Gd-doped ceria (GDC) powder compact in reducing atmosphere leads to reduction and subsequent decomposition of GDC, and cracking of the pellet upon cooling, depending upon the firing temperature T and oxygen partial pressure Po-2. In this study, GDC powder compacts were fired in various reducing atmosphere by controlling the ratio of H-2 and H2O mixing (H2O content: 0.28, 1.3, 2.7, 3 %) at temperatures T = 703, 835, 975, 1088, 1180, 1262 and 1354 A degrees C. The phase and oxygen non-stoichiometry of GDC, respectively, were examined by using X-ray diffraction (XRD) and measuring the weight change of GDC pellet after cooling with fixed cooling rate to room temperature. Po-2 below which GDC decomposes was determined as a function of temperature for a fixed cooling rate (5 A degrees C/min). GDC pellets were stable at T <= 1088 A degrees C regardless of Po-2, and decomposed at T = 1354 A degrees C in all tested Po-2. A single-phase GDC without decomposition may be obtained at T = 1180 or 1262 A degrees C with appropriate Po-2. Both the degree of nonstoichiometry and the temperature are important factors to determine the stability of GDC pellet. To avoid cracking of GDC pellets due to chemical expansion during sintering in reducing atmosphere, GDC may be sintered at low T or high Po-2 or both, or it may be sintered to result in low porosity with small grain size for increased fracture strength.
机译:取决于焙烧温度T和氧分压Po-2,在还原气氛中焙烧掺Gd的二氧化铈(GDC)粉末压块会导致GDC的还原和随后的分解,以及在冷却时颗粒的破裂。在这项研究中,通过控制H-2和H2O的混合比例(H2O含量:0.28、1.3、2.7、3%)在温度T = 703、835、975、1088、1180下在各种还原性气氛中烧制GDC粉末压块分别为1262和1354A。通过使用X射线衍射(XRD)并在以固定的冷却速率冷却至室温后测量GDC颗粒的重量变化,分别检查了GDC的相和氧化学计量。在固定的冷却速率(5 A摄氏度/分钟)下,确定GDC分解成的Po-2低于温度的函数。不管Po-2是什么,GDC颗粒在T <= 1088 A摄氏度下都稳定,并且在所有测试的Po-2中都在T = 1354 A摄氏度下分解。在适当的Po-2下,可以在T = 1180或1262 A摄氏度下获得不分解的单相GDC。非化学计量的程度和温度都是决定GDC颗粒稳定性的重要因素。为避免在还原性气氛中烧结过程中由于化学膨胀而导致GDC球团开裂,可以在低T或高Po-2或同时在两者下烧结GDC,或者将其烧结以产生低孔隙率的小晶粒,以提高断裂强度。

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