首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Determination of the thermal conductivity in zirconia based inert matrix nuclear fuel by oscillating differential scanning calorimetry and laser flash
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Determination of the thermal conductivity in zirconia based inert matrix nuclear fuel by oscillating differential scanning calorimetry and laser flash

机译:振荡差示扫描量热法和激光闪光法测定氧化锆基惰性基质核燃料的导热系数

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The performances of oscillating differential scanning calorimetry (ODSC) and laser-hash technique in determining the thermal conductivity and the specific heat of zirconia-based materials, analogous to a potential nuclear fuel, were compared. The tested materials were (Zr1-x-y-zYx,Er-y,Me-z)O2-(x+y/2), with Me=Ce or Th. The measured specific heats were around 0.4 J K-1 g(-1) and the thermal conductivities ranged from 2 to 3 W K-1 m(-1). The ODSC measurements resultedin c(p) values. The thermal conductivity was derived from two complementary measurements, one with a thin and the other with a thick sample. The laser-hash technique directly delivered the thermal diffusivity of the sample; consequently, the specific heat capacity c(p) has to be known for determining the thermal conductivity. The ODSC measurements were affected by the position of the sample on the support. This, consequently, influenced the reproducibility of the measurements. The reproducibility of the scans by laser flash was excellent. Thermal conductivity decreased with increase in the stabilizer (Y, Er) concentration. This trend was justified on the basis of a model including concentration and size of the oxygen vacancies. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 22]
机译:比较了振荡差示扫描量热法(ODSC)和激光哈希技术确定类似于潜在核燃料的氧化锆基材料的热导率和比热的性能。被测材料为(Zr1-x-y-zYx,Er-y,Me-z)O2-(x + y / 2),Me = Ce或Th。测得的比热约为0.4 J K-1 g(-1),热导率范围为2至3 W K-1 m(-1)。 ODSC测量结果为c(p)值。导热率来自两个互补的测量值,一个测量值很薄,另一个测量值很厚。激光哈希技术直接传递了样品的热扩散率。因此,必须确定比热容c(p)才能确定导热系数。 ODSC测量值受样品在支持物上的位置的影响。因此,这影响了测量的可重复性。激光闪光扫描的重现性极好。导热系数随稳定剂(Y,Er)浓度的增加而降低。该趋势基于包括氧空位的浓度和大小的模型是合理的。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:22]

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