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首页> 外文期刊>Journal of the European Ceramic Society >Continuous functionally graded material to improve the thermoelectric properties of ZnO
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Continuous functionally graded material to improve the thermoelectric properties of ZnO

机译:连续功能梯度材料改善ZnO的热电性能

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摘要

Functionally graded material (FGM) in terms of grain size gradation is fabricated from ZnO with a combination of modified Spark Plasma Sintering (SPS) graphite tooling, water sintering enhancements through transient liquid phase surface transport, and strategic SPS mechanical loading. The grain size gradation of the ZnO FGM spans from 180 nm grains to 1.2 micrometers in a fully dense material. This is the first semiconductor or ceramic to be graded microstructurally to this extent. Predictions of the microstructure with a Master Sintering Curve (MSC) approach were done with a series of isothermal experiments on two different FGM conditions revealing a slight offset due to a constrained mechanism. The mechanical properties were tested with Vickers micro hardness across the sample, showing a gradient in hardness from 2.6 GPa to 4.2 GPa. In addition, the thermoelectric properties of the FGM were measured and show a zT of 2 x 10 ~(-5)at 100°C compared to uniform small- and large-grained samples of 1 x 10 ~(-6). This is an order of magnitude difference making a new path for improvements of bulk thermoelectric material.
机译:功能梯度材料(FGM)在晶粒尺寸灰度方面由ZnO制成,具有改性的火花等离子体烧结(SPS)石墨工具的组合,通过瞬态液相表面传输,水烧结增强,以及战略性的SPS机械负载。 ZnO FGM的晶粒尺寸梯度从180nm晶粒中溅射到1.2微米以完全致密的材料。这是在这种程度上显微渐变的第一半导体或陶瓷。用母烧结曲线(MSC)方法的微观结构预测是在两个不同的FGM条件下用一系列等温实验进行,揭示由于受限制的机制略有偏移。在样品上用Vickers微硬度测试机械性能,显示从2.6GPa至4.2GPa的硬度的梯度。另外,与1×10〜(-6)的均匀小和大颗粒样品相比,测量了FGM的热电性能,并在100℃下显示了2×10〜(-5)的Zt。这是一种幅度差的顺序,使得散装热电材料改进的新路径。

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