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Reactive sintering process and thermoelectric properties of boron rich boron carbides

机译:富硼碳化硼的反应烧结工艺及热电性能

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摘要

Dense boron rich boron carbides were reactive sintered by hotpressing at 2050 °C using elementary boron—carbon compositions with carbon contents of 9.1, 11.1, 13.3 and 18.8 at.%. The following material characteristics are presented: relative density, SEM images, EDX, X-ray diffraction and corresponding lattice parameters, Seebeck coefficient, electrical conductivity and thermoelectric power factor. Significant grain growth has been obtained with increasing boron content. A deeper understanding of the boron and carbon reaction and the overall sintering process is gained by thermal and chemical analysis in combination with X-ray diffraction. Additionally a thermal experiment with boron and carbon layers illustrates the solid state diffusion behaviour. The found results of boron carbide properties of this paper correspond with results by other authors. The aim is to correlate technological aspects of sintering procedure with material properties. This should help to improve the thermoelectric efficiency of boron carbide based materials.
机译:通过使用碳含量为9.1、11.1、13.3和18.8 at。%的基本硼碳组合物在2050°C进行热压,对致密的富硼碳化硼进行反应烧结。介绍了以下材料特性:相对密度,SEM图像,EDX,X射线衍射和相应的晶格参数,塞贝克系数,电导率和热电功率因数。随着硼含量的增加,获得了明显的晶粒长大。通过热和化学分析结合X射线衍射,可以更深入地了解硼和碳的反应以及整个烧结过程。另外,用硼和碳层进行的热实验说明了固态扩散行为。本文发现碳化硼性能的结果与其他作者的结果一致。目的是使烧结过程的技术方面与材料性能相关联。这将有助于提高碳化硼基材料的热电效率。

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