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Solidification processing of alloys in the pseudo-binary PbTe-Sb2Te3 system

机译:赝二元PbTe-Sb2Te3体系中合金的凝固加工

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The effects of composition and cooling rate on the microstructures of alloys in the pseudo-binary PbTe-Sb2Te3 system were investigated as a first step towards the design of nanostructured materials with enhanced thermoelectric properties. Liquid alloys of three different compositions were cooled in three distinct ways: water quenching, air cooling and furnace cooling. The resultant structures and phases were examined by electron microscopy, electron microprobe chemical analysis and electron backscatter diffraction. The compound Pb2Sb6Te11 precipitated as a metastable phase (in conjunction with PbTe and/or Sb2Te3) under all conditions. Furthermore, whereas PbTe exhibited dendritic morphology, Sb2Te3 and Pb2Sb6Te11 I crystallized as lamellar platelets with preferred (00 1) orientation. The range of cooling rates was from similar to 1 to 26 K/s, while the characteristic microstructural feature size ranged from 10 to 35 pm for dendrites, and from 15 to 50 mu m for lamella. The prospects for achieving nanoscale structure are discussed. (c) 2006 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:研究了成分和冷却速率对拟二元PbTe-Sb2Te3体系中合金微观组织的影响,作为设计具有增强热电性能的纳米结构材料的第一步。三种不同成分的液态合金以三种不同的方式冷却:水淬、空冷和炉冷。通过电子显微镜、电子探针化学分析和电子背散射衍射等手段对所得结构和相进行了检测。化合物Pb2Sb6Te11在所有条件下都沉淀为亚稳相(与PbTe和/或Sb2Te3结合)。此外,虽然 PbTe 表现出树突状形态,但 Sb2Te3 和 Pb2Sb6Te11 I 结晶为层状片状,具有优选的 (00 1) 取向。冷却速率范围为1-26 K/s,枝晶的特征微观结构特征尺寸范围为10-35 pm,薄片为15-50 μ m。讨论了实现纳米级结构的前景.(c) 2006 Acta Materialia Inc.,由Elsevier Ltd.出版。保留所有权利。

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