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Pulse-current sintering and thermoelectric properties of gas-atomized silicon-germanium powders

机译:气体雾化硅锗粉的脉冲电流烧结和热电性能

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Both p- and n-type Si0.8Ge0.2 powders for thermoelectric materials were prepared by gas atomizing of the corresponding ingots with boron and phosphorous, respectively, and then the dense bodies were formed by pulse-current sintering (PCs) of these powders. The effect of ball milling on sinterability and thermoelectricity was discussed. The abrupt densification of Si-Ge gas-atomized powders occurred over 1500 K due to the liquefaction of very small particles themselves and around the contact points between larger particles by the local concentration of electric current in the dense body. However, the sinterability of as-prepared powders was improved with the surface energy increased mechanochemically by ball milling. Thermoelectric properties, i.e., thermal conductivity, electrical resistivity, and Seebeck coefficient of the dense bodies were further determined in a temperature range from room temperature to 1073 K, followed by the evaluation of the figure of merit. The figure of merit of the dense body from ball-milled powders was lowered by approximately 10% due to the increase of electrical resistivity compared with that from as-prepared powders. That is, ball milling was effective for sinterability but ineffective for thermoelectricity in the fabrication of p- and n-type Si0.8Ge0.2 dense bodies. Furthermore, pn-joined Si0.8Ge0.2 thermoelectric elements were fabricated by simultaneous sintering and joining of both types of Si-Ge gas-atomized powders. (C) 2004 Elsevier B.V. All rights reserved.
机译:通过分别用硼和磷对相应的铸锭进行气体雾化来制备用于热电材料的p型和n型Si0.8Ge0.2粉末,然后通过脉冲电流烧结(PC)形成致密体。讨论了球磨对烧结性和热电性的影响。 Si-Ge气雾化粉末的突然致密化发生在1500 K以上,这是由于非常小的颗粒本身以及致密体中的局部电流集中导致大颗粒之间的接触点附近的液化。然而,通过球磨机械化学地增加表面能,改善了所制备粉末的可烧结性。在室温至1073K的温度范围内,进一步确定致密体的热电性质,即热导率,电阻率和塞贝克系数,然后评价品质因数。与制备的粉末相比,由于电阻率的增加,球磨的粉末致密体的品质因数降低了约10%。即,球磨对烧结性有效,但对p型和n型Si0.8Ge0.2致密体的制造中的热电无效。另外,通过同时烧结和结合两种类型的Si-Ge气雾化粉末来制造pn结合的Si0.8Ge0.2热电元件。 (C)2004 Elsevier B.V.保留所有权利。

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