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Development of the High Performance Thermoelectric Modules for High Temperature Heat Sources

机译:高温热源高性能热电模块的开发

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In recent years, power generating systems using thermoelectric elements have become attractive as an effective method of using industrial waste heat, at a temperature of around 773K, to produce energy. However, in order to develop a module usable under such a high temperature, certain concerns have to be overcome, e.g. thermal stress, diffusion of the connecting interfaces, etc. In this research, using an FeSi_2 with diffusion barrier layers and a SiGe element produced by a powder metallurgy process, the module structure and installation method were optimized for application in PM sintering furnaces. As a result, from a viewpoint of heat stress at high temperatures and contact thermal resistance, it is confirmed that the optimal structure is the skeleton structure using Cu substrate on the cooling side, which has excellent heat conductivity and the optimal installation method is to adopt a carbon sheet and a mica sheet to the high temperature side, where Si grease is applied to the low temperature side, under pressurized condition. The power of the developed modules indicated 0.5W in an FeSi_2 module and 3.8 W with a SiGe module at 827K, respectively. Moreover, neither breakage nor deterioration were observed after 30 heat cycles test simulating sintering furnace.
机译:近年来,使用热电元件的发电系统作为利用工业废热在约773K的温度下产生能量的有效方法而变得引人注目。但是,为了开发可在这种高温下使用的模块,必须克服某些问题,例如,这项研究中,使用具有扩散阻挡层的FeSi_2和通过粉末冶金工艺生产的SiGe元素,对模块结构和安装方法进行了优化,以用于PM烧结炉。结果,从高温下的热应力和接触热阻的观点出发,可以确认最佳结构是在冷却侧使用Cu基板的骨架结构,导热性优异,采用最佳的安装方法。将碳片和云母片置于高温下,在加压条件下将硅脂涂在低温下。所开发模块的功率分别表示在FeSi_2模块中为0.5W和在827K时为SiGe模块为3.8W。此外,在模拟烧结炉的30个热循环测试之后,没有观察到破裂或劣化。

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