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Thermophysical Properties of Laser-Sintered Zr-ZrB_2 Cermets

机译:激光烧结Zr-ZrB_2金属陶瓷的热物理性质

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摘要

Thermophysical properties between 293 and 1863 K were investigated for laser-sintered Zr-ZrB_2 cermets containing 30, 50, and 70 wt% Zr. The measured values of coefficient of thermal expansion of Zr-ZrB_2 cermets were larger than the predicted values due to the effect of Zr-O solid solution, which was formed during laser sintering. The order-disorder phase transition of Zr-O solid solution resulted in the sharp increase in heat capacity between 625 and 675 K. Thermal conductivities were calculated from measured densities, heat capacities, and thermal diffusivities. Thermal diffusivities at 473 K were 14.0,12.2, and 8.0 mm~2/s for 30Zr-ZrB_2, 50Zr-ZrB_2, and 70Zr-ZrB_2, respectively. Thermal conductivities at 473 K were 38, 31, and 20 W-(m·K)~(-1) for 30Zr-ZrB_2, 50Zr-ZrB_2, and 70Zr-ZrB_2, respectively. Electron contribution to thermal conductivity of the 70Zr-ZrB_2 cermet was determined using electrical resistivity measurements, which shows that total thermal conductivity mostly came from the electron contribution at high temperatures (1073-1473 K) while the phonon contribution was very small.
机译:对于包含30、50和70 wt%Zr的激光烧结Zr-ZrB_2金属陶瓷,研究了293和1863 K之间的热物理性质。由于在激光烧结过程中形成的Zr-O固溶体的作用,Zr-ZrB_2金属陶瓷的热膨胀系数的测量值大于预测值。 Zr-O固溶体的有序无序相变导致热容量在625和675 K之间急剧增加。根据测量的密度,热容量和热扩散率计算出热导率。对于30Zr-ZrB_2、50Zr-ZrB_2和70Zr-ZrB_2,在473 K下的热扩散分别为14.0、12.2和8.0 mm〜2 / s。对于30Zr-ZrB_2、50Zr-ZrB_2和70Zr-ZrB_2,在473 K下的热导率分别为38、31和20 W-(m·K)〜(-1)。使用电阻率测量确定电子对70Zr-ZrB_2金属陶瓷的导热率的贡献,这表明总导热率主要来自高温(1073-1473 K)时的电子贡献,而声子的贡献很小。

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    Department of Electrical and Computer Engineering, University of Virginia, Charlottesville, Virginia 22904;

    Department of Electrical and Computer Engineering, University of Virginia, Charlottesville, Virginia 22904;

    Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:39:28

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