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首页> 外文期刊>Journal of Materials Science >Spark plasma sintering and thermoelectric evaluation of nanocrystalline magnesium silicide (Mg_2Si)
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Spark plasma sintering and thermoelectric evaluation of nanocrystalline magnesium silicide (Mg_2Si)

机译:火花等离子体烧结纳米晶硅化镁(Mg_2Si)的热电评估

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Recently magnesium silicide (Mg_2Si) has received great interest from thermoelectric (TE) society because of its non-toxicity, environmental friendliness, comparatively high abundance, and low production material cost as compared to other TE systems. It also exhibited promising transport properties, including high electrical conductivity and low thermal conductivity, which improved the overall TE performance (ZT). In this work, Mg_2Si powder was obtained through high energy ball milling under inert atmosphere, starting from commercial magnesium silicide pieces (99.99 %, Alfa Aesar). To maintain fine microstructure of the powder, spark plasma sintering (SPS) process has been used for consolidation. The Mg_2Si powder was filled in a graphite die to perform SPS and the influence of process parameters as temperature, heating rate, holding time and applied pressure on the microstructure, and densification of compacts were studied in detail. The aim of this study is to optimize SPS consolidation parameters for Mg_2Si powder to achieve high density of compacts while maintaining the nanostructure. X-Ray diffraction (XRD) was utilized to investigate the crystalline phase of compacted samples and scanning and transmission electron microscopy (SEM & TEM) coupled with Energy-Dispersive X-ray Analysis (EDX) was used to evaluate the detailed microstructural and chemical composition, respectively. All sintered samples showed compaction density up to 98 %. Temperature dependent TE characteristics of SPS compacted Mg_2Si as thermal conductivity, electrical resistivity, and Seebeck coefficient were measured over the temperature range of RT 600 C for samples processed at 750 C, reaching a final ZT of 0.14 at 600 C. ? 2012 Springer Science+Business Media New York.
机译:近年来,硅化镁(Mg_2Si)由于无毒,环境友好,相对较高的丰度以及与其他TE系统相比较低的生产成本而受到热电(TE)协会的广泛关注。它还具有良好的传输性能,包括高电导率和低热导率,从而改善了整体TE性能(ZT)。在这项工作中,Mg_2Si粉末是通过在惰性气氛下通过高能球磨从商业化的硅化镁片(99.99%,Alfa Aesar)获得的。为了保持粉末的精细微观结构,已使用火花等离子体烧结(SPS)工艺进行固结。将Mg_2Si粉末填充到石墨模具中以执行SPS,并详细研究了温度,加热速率,保持时间和施加压力等工艺参数对组织的影响以及压坯的致密化。这项研究的目的是优化Mg_2Si粉末的SPS固结参数,以在保持纳米结构的同时实现高密度的压坯。 X射线衍射(XRD)用于研究压实样品的晶相,扫描和透射电子显微镜(SEM&TEM)结合能量色散X射线分析(EDX)用于评估详细的微观结构和化学组成, 分别。所有烧结样品均显示出高达98%的压实密度。对于在750 C下处理的样品,在RT 600 C的温度范围内测量了SPS压实的Mg_2Si随温度变化的TE特性,如热导率,电阻率和塞贝克系数,在600 C下最终ZT为0.14。 2012年Springer Science + Business Media纽约。

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