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Potential use of only Yb2O3 in producing dense Si3N4 ceramics with high thermal conductivity by gas pressure sintering

机译:仅通过Yb2O3即可通过气压烧结生产高导热率的致密Si3N4陶瓷

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摘要

Yb2O3 is an efficient sintering additive for enhancing not only thermal conductivity but also the high-temperature mechanical properties of Si3N4 ceramics. Here we report the fabrication of dense Si3N4 ceramics with high thermal conductivity by the gas pressure sintering of α-Si3N4 powder compacts, using only Yb2O3 as an additive, at 1900 °C under a nitrogen pressure of 1 MPa. The effects of Yb2O3 content, sample packing condition and sintering time on the densification, microstructure and thermal conductivity were investigated. Curves of the density plotted against the Yb2O3 content exhibited a characteristic ‘N’ shape with a local minimum at 3 mol% Yb2O3 and nearly complete densification below and above this concentration. The effects of the sample packing condition on the densification, microstructure and thermal conductivity strongly depended on the Yb2O3 content. The embedded condition led to more complete densification but also to a decrease in thermal conductivity from 119 to 94 W m-1 K−1 upon 1 mol% Yb2O3 addition. The sample packing condition had little effect on the density and thermal conductivity (102–106 W m−1 K−1) at 7 mol% Yb2O3. The thermal conductivity value was strongly related to the microstructure.
机译:Yb2O3是一种有效的烧结添加剂,不仅可以提高Si3N4陶瓷的导热性,还可以提高其高温机械性能。在这里,我们报道了在1900℃,1 MPa氮气压力下,仅使用Yb2O3作为添加剂,通过α-Si3N4粉末压块的气压烧结制备具有高导热率的致密Si3N4陶瓷的过程。研究了Yb2O3的含量,样品的填充条件和烧结时间对致密化,微观结构和热导率的影响。相对于Yb2O3含量绘制的密度曲线显示出特征性的“ N”形,在3 mol%Yb2O3处具有最小值,并且在该浓度以上和以下几乎完全致密。样品包装条件对致密化,微观结构和导热系数的影响主要取决于Yb 2 O 3 的含量。嵌入条件导致更完全的致密化,但当Yb 2为1时,导热系数从119 W降低至94 W m -1 K -1 O 3 添加。 Yb 2 时,样品的填充条件对其密度和热导率(102-106 W m -1 K -1 )的影响很小。 sub> O 3 。导热率值与微观结构密切相关。

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