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Fabrication of layered p-type AgSbTe/sub 2/-(Bi,Sb)/sub 2/Te/sub 3/ thermoelectric module and its performances

机译:分层p型AgSbTe / sub 2 /-(Bi,Sb)/ sub 2 / Te / sub 3 /热电模块的制备及其性能

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A layered p-type thermoelectric module of AgSbTe/sub 2/-(Bi,Sb)/sub 2/Te/sub 3/ was fabricated by a Spark Plasma Sintering (SPS) process and its' performances was evaluated with both calculation and measurement. Each powder of AgSbTe/sub 2/ and (Bi,Sb)/sub 2/Te/sub 3/ was consolidated by the SPS process. Various temperature distributions in the two-layered module were simulated by solving an unsteady one-dimensional equation of heat conduction based on the obtained data of thermoelectric properties. An optimum junction point of two elements was predicted from numerical changes in the performances with the connecting position of two materials. Several materials for the electrodes were tested to find better bonding condition between the thermoelectric material and the electrode. Finally, the performances of the resulting module were measured. It was found that the performances predicted by the calculation were in fairly good agreement with the measured ones.
机译:通过放电等离子体烧结(SPS)工艺制备了AgSbTe / sub 2 /-(Bi,Sb)/ sub 2 / Te / sub 3 /的p型分层热电模块,并通过计算和测量对其性能进行了评估。 。 AgSbTe / sub 2 /和(Bi,Sb)/ sub 2 / Te / sub 3 /的每种粉末通过SPS工艺进行固结。根据获得的热电特性数据,通过求解一个不稳定的一维热传导方程,模拟了两层模块中的各种温度分布。根据两种材料的连接位置,通过性能的数值变化来预测两个元素的最佳接合点。测试了几种用于电极的材料,以发现热电材料和电极之间更好的结合条件。最后,测量了所得模块的性能。结果发现,通过计算预测的性能与测得的性能相当吻合。

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