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New Technology for Microfabrication and Testing of a Thermoelectric Device for Generating Mobile Electrical Power

机译:用于产生移动电源的热电设备的微细加工和测试新技术

摘要

Thermoelectric (TE) power generation is an increasingly important power generation technology. Major advantages include: no moving parts, low-weight, modularity, covertness/silence, high power density, low amortized cost, and long service life with minimum or no required maintenance. Despite low efficiency of power generation, there are many specialized needs for electrical power that TE technologies can uniquely and successfully address. Recent advances in thermoelectric materials technology have rekindled acute interest in thermoelectric power generation. We have developed single crystalline n- and p- type PbTe crystals and are also, developing PbTe bulk nanocomposites using PbTe nano powders and emerging filed assisted sintering technology (FAST). We will discuss the materials requirements for efficient thermoelectric power generation using waste heat at intermediate temperature range (6500 to 8500 K). We will present our recent results on production of n- and p- type PbTe crystals and their thermoelectric characterization. Relative characteristics and performance of PbTe bulk single crystals and nano composites for thermoelectric power generation will be discussed.
机译:热电(TE)发电是一种越来越重要的发电技术。主要优势包括:无活动部件,重量轻,模块化,隐蔽性/静音性,高功率密度,摊销成本低,使用寿命长,而无需或只需很少的维护。尽管发电效率低下,但TE技术可以独特且成功地解决许多特殊的电力需求。热电材料技术的最新进展使人们对热电发电产生了浓厚的兴趣。我们已经开发出单晶n型和p型PbTe晶体,并且还在开发使用PbTe纳米粉末的PbTe块状纳米复合材料和新兴的辅助烧结技术(FAST)。我们将讨论在中等温度范围(6500至8500 K)下利用废热进行高效热电发电的材料要求。我们将介绍有关n型和p型PbTe晶体的生产及其热电特性的最新结果。将讨论用于热电发电的PbTe块状单晶和纳米复合材料的相对特性和性能。

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