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用于高温热导率测量的装置的制造。

Fabrication of setup for high temperature thermal conductivity measurement.

作者信息

Patel Ashutosh, Pandey Sudhir K

机构信息

School of Engineering, Indian Institute of Technology Mandi, Kamand, Himachal Pradesh 175005, India.

出版信息

Rev Sci Instrum. 2017 Jan;88(1):015107. doi: 10.1063/1.4973779.

Abstract

In this work, we report the fabrication of an experimental setup for high temperature thermal conductivity (κ) measurement. It can characterize samples with various dimensions and shapes. Steady state based axial heat flow technique is used for κ measurement. Heat loss is measured using parallel thermal conductance technique. Simple design, lightweight, and small size sample holder is developed by using a thin heater and limited components. Low heat loss value is achieved by using very low thermal conductive insulator block with small cross-sectional area. Power delivered to the heater is measured accurately by using 4-wire technique and for this, the heater is developed with 4 wires. This setup is validated by using BiSbTe, polycrystalline bismuth, gadolinium, and alumina samples. The data obtained for these samples are found to be in good agreement with the reported data. The maximum deviation of 6% in the value κ is observed. This maximum deviation is observed with the gadolinium sample. We also report the thermal conductivity of polycrystalline tellurium from 320 K to 550 K and the nonmonotonous behavior of κ with temperature is observed.

摘要

在这项工作中,我们报告了一种用于高温热导率(κ)测量的实验装置的制造。它可以对各种尺寸和形状的样品进行表征。基于稳态的轴向热流技术用于κ测量。热损失采用平行热导技术进行测量。通过使用薄加热器和有限的组件,开发出了设计简单、重量轻且尺寸小的样品架。通过使用具有小横截面积的极低导热绝缘块实现了低热损失值。通过四线技术精确测量输送到加热器的功率,为此,加热器采用四线设计。该装置通过使用BiSbTe、多晶铋、钆和氧化铝样品进行了验证。发现这些样品获得的数据与报告的数据高度吻合。观察到κ值的最大偏差为6%。这种最大偏差出现在钆样品上。我们还报告了多晶碲在320 K至550 K范围内的热导率,并观察到κ随温度的非单调行为。

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