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Correlation between Thermoelectric Properties and Plastic Deformation of p-Type Bi_(0.5)Sb_(1.5)Te_3 Thermoelectric Materials

机译:p型Bi_(0.5)Sb_(1.5)Te_3热电材料的热电性能与塑性变形的相关性

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摘要

A plastic deformation process and ratio study of p-type Bi(0.5)Sb_(1.5)Te_3 was performed. The ingots were grown by the Bridgman method. Disks were cut from the ingots and deformed by either cold-pressing or by hot-pressing under pulse current heating. The plastic deformation ratio was controlled from 55 to 90 percent. The crystal structures of the deformed samples were identified by X-ray diffraction and pole figure analyses. The diffraction patterns indicate that the surfaces and bottoms of the samples were highly oriented in the hexagonal (00-l) plane. Thermoelectric properties change depending on not the plastic deformation ratio but the kind of plastic deformation process. The power factor for hot-press deformed samples exceeded those for the original ingots and cold-press deformed samples. The results suggest that the process of hot-press deformation enhances the thermoelectric properties of p-type Bi_(0.5)Sb_(1.5)Te_3.
机译:进行了p型Bi(0.5)Sb_(1.5)Te_3的塑性变形过程和比研究。通过Bridgman方法生长锭。从锭上切下圆盘,并在脉冲电流加热下通过冷压或热压使其变形。塑性变形率控制在55%至90%之间。通过X射线衍射和极图分析来鉴定变形样品的晶体结构。衍射图谱表明样品的表面和底部在六边形(00-1)平面中高度取向。热电特性的变化不是取决于塑性变形率,而是取决于塑性变形过程的种类。热压变形样品的功率因数超过了原始铸锭和冷压变形样品的功率因数。结果表明,热压变形过程增强了p型Bi_(0.5)Sb_(1.5)Te_3的热电性能。

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