用电位器式高精度发生器测试设备评价单片和分段热电材料

C. Stiewe, G. Karpinski, D. Platzek, H. Kaibe, E. Muller
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引用次数: 0

摘要

在DLR建立了一个研究热电发电机在接近实际环境下的热电特性和多层试样热阻的装置。输出功率和效率、输出电压和电流、内阻和总热导等量可以在真空或惰性气体下测定,也可以在氧化气氛下测定。通过热侧参考块中的温度梯度测量通过发生器的热流。冷侧热流密度由商用热流密度计、第二个参考块或两者的组合来测量。这种冗余测量为不完全的热屏蔽引起的系统误差提供了一个敏感的指示器,这将导致热旁路。与另一机构的同类仪器进行了比较,证明了该仪器具有良好的测量精度。所得参数的相对误差在5%范围内。GTF中的热流检测方法也可用于热阻研究,特别是对于导热系数过低的多层系统,无法通过激光闪光进行适当的测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of monolithic and segmented thermoelectric materials using a potentiometer-type high accuracy generator test facility
A facility for investigating the thermal and electrical properties of a thermoelectric generator in an environment close to reality and the thermal resistance of multi-layer specimen has been constructed at DLR. Quantities such as output power and efficiency, output voltage and current, inner resistance, and overall thermal conductance can be determined under vacuum or inert gas, but also in oxidising atmosphere. The heat flow through the generator is measured via the temperature gradient in a reference block at the hot side. The cold side heat flux is measured by a commercial heat flux meter, a second reference block or a combination of both. This redundant measurement provides a sensitive indicator for systematic errors caused by incomplete thermal shielding which would lead to thermal bypasses. Comparison of our generator tests a comparison with by a similar apparatus at another institution gives evidence for good measuring accuracy. The relative error of the resulting parameters is in the range of 5%. The method of heat flow detection in the GTF can also be used for thermal resistance investigations, especially on multi-layer systems of too low thermal conductivities for appropriate measurements by laser flash.
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