用机械合金化-挤压法生产热电材料

J. Simard, D. Vasilevskiy, F. Belanger, J. L'ecuyer, S. Turenne
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引用次数: 19

摘要

挤压法是Bi/sub - 2/Te/sub - 3基热电合金工业生产中最有前景的方法之一。当与机械合金化相结合时,该工艺有望大幅节省成本,因为它能够提供净形状组件,从而减少所谓的切口损失并提高材料产量。众所周知,与常规生长的合金相比,使用各种粉末加工路线之一生产的材料具有更高的机械强度,从而提高了可靠性。采用机械合金化和挤压法制备了p型(Bi/sub - 2-x/Sb/sub -x/ Te/sub - 3/)和n型(Bi/sub - 2/Te/sub - 3-y/Se/sub -y/)合金,研究了这些合金的组织、成分和热电性能。通过仔细控制过程的每一步,我们发现可以为p型和n型合金生产具有良好性能的热电材料棒。p型合金的性能值高达3.35 /spl次/ 10/sup -3/ K/sup -1/, n型合金的性能值高达2.8 /spl次/ 10/sup -3/ K/sup -1/。与传统的熔融生长材料相比,机械性能也有五倍的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of thermoelectric materials by mechanical alloying - extrusion process
The extrusion process offers one of the greatest prospects for the industrial production of Bi/sub 2/Te/sub 3/-based thermoelectric alloys. When coupled with mechanical alloying, this process promises substantial cost savings because of its ability to deliver net shape components, leading to a reduction in the so-called kerf losses and higher material yields. It is also well known that materials produced using one of the various powder processing routes have greater mechanical strength when compared to conventionally grown alloys, leading to an improved reliability. We have produced both p-type (Bi/sub 2-x/Sb/sub x/Te/sub 3/) and n-type (Bi/sub 2/Te/sub 3-y/Se/sub y/) alloys using mechanical alloying and extrusion and have studied the structure, composition and thermoelectric properties of these alloys. By carefully controlling every step of the process we have found that it is possible to produce rods of thermoelectric material, for both p- and n-type alloys, which have good properties. Figures of merit of up to 3.35 /spl times/ 10/sup -3/ K/sup -1/ for p-type alloys and 2.8 /spl times/ 10/sup -3/ K/sup -1/ for n-type alloys have been obtained. A fivefold improvement in the mechanical properties over conventional melt grown material has also been observed.
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