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首页> 外文期刊>Journal of Electronic Materials >Effect of Cyclic Uniaxial Pressure in Pulse-Current Sintering on Microstructure of Bi2Te3-Based Thermoelectric Materials
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Effect of Cyclic Uniaxial Pressure in Pulse-Current Sintering on Microstructure of Bi2Te3-Based Thermoelectric Materials

机译:循环单轴压力在脉冲电流烧结对基于Bi2te3基热电材料微观结构的影响

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Various cyclic uniaxial pressure patterns have been applied to a powder of Bi0.4Sb1.6Te3 thermoelectric material during the pulse-current sintering process. The cyclic uniaxial pressure pattern (0 MPa to 100 MPa) was varied by changing the number of pressure cycles and the ratio of the pressing time to the time during which no pressure was applied (i.e., pressing time/pressureless time). Sintering was performed at 400 degrees C for 10 min in vacuum. Electron backscattered diffraction analysis revealed that both the number of pressure cycles and the pressing time ratio strongly affected the microstructure of the sintered materials. Increasing the number of pressure cycles led to a monotonic increase in the intensity of the c-plane orientation. Increasing the pressing time ratio also enhanced the intensity of the c-plane orientation, although the intensity of the c-plane orientation decreased at larger pressing time ratios. These results indicate that constant pressure and pressureless sintering are not effective for attaining c-plane orientation and that the cyclic uniaxial pressure pattern is important for controlling the microstructure of the sintered material. Consequently, the thermoelectric properties of sintered materials could be enhanced by varying the cyclic uniaxial pressure pattern.
机译:在脉冲电流烧结过程中,各种循环单轴压力模式已被应用于Bi0.4SB1.6Te3热电材料的粉末。通过改变压力循环的数量和施加时间与施加压力的时间的比率来改变循环单轴压力图案(0MPa至100MPa)(即,按压时间/无线时间)。烧结在真空中以400℃进行10分钟。电子背散射衍射分析显示,压力循环的数量和压制时间比强烈影响烧结材料的微观结构。增加压力循环的数量导致了C面取向强度的单调增加。增加按压时间比也增强了C面取向的强度,尽管在较大的按压时间比下的C面取向的强度降低。这些结果表明,恒压和无压烧结对于获得C面取向而无效,并且循环单轴压力模式对于控制烧结材料的微观结构是重要的。因此,通过改变环状单轴压力模式,可以提高烧结材料的热电性能。

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