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Synthesis and Characterization of Magnesium-Silicon and Magnesium-Tin Solid Solutions for Thermoelectric Applications

机译:热电应用中镁硅和镁锡固溶体的合成与表征

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摘要

The environmentally friendly n-type Mg2(Si, Sn) thermoelectric solid solutions have a strong potential of commercial utilization in thermoelectric (TE) energy conversion due to their availability, low density (~3.02 g/cm3), and high stability at middle temperature range (400-600 ?C) that are typically observed from waste heat dissipating systems. The bulk materials were prepared from element powders via slow cooking under vacuum condition and current-assisted hot-press sintering. Temperature vs time curves have been researched in this thesis for fully reacted magnesium-silicide & magnesium-stannide green ingots with doping materials i.e. antimony, bismuth by different doping ratios. These ingots were ground by a high energy ball miller, uniaxial cold pressed into half inch pallets and then sintered by Direct Current-assisted hot pressing. Different synthesis conditions such as ball milling, sintering time, pressure, have been compared by SEM images and XRD tests analysis to figure out optimized process parameters. Several samples? thermal conductivities (?) were plotted as a function of temperature to study different synthesis strategies and doping materials? effects on phonon scattering inside bulk thermoelectric materials.
机译:环保的n型Mg2(Si,Sn)热电固溶体由于其可用性,低密度(〜3.02 g / cm3)和在中温下的高稳定性而在热电(TE)能量转换中具有强大的商业应用潜力通常在废热系统中观察到的温度范围(400-600°C)。通过在真空条件下缓慢蒸煮和电流辅助热压烧结,由元素粉末制备块状材料。本文研究了硅镁铝锭和锡镁铝锭与不同掺杂比例的锑,铋等掺杂材料完全反应的温度-时间曲线。这些铸锭由高能球磨机研磨,单轴冷压成半英寸的托盘,然后通过直流电热压烧结。通过SEM图像和XRD测试分析比较了不同的合成条件(例如球磨,烧结时间,压力),以找出优化的工艺参数。几个样品?将热导率(?)绘制为温度的函数,以研究不同的合成策略和掺杂材料?对散装热电材料内部声子散射的影响。

著录项

  • 作者

    Hu Fang;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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