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首页> 外文期刊>International Journal of Thermophysics >Design and Application of a Freestanding Sensor Based on 3ω Technique for Thermal-Conductivity Measurement of Solids, Liquids, and Nanopowders
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Design and Application of a Freestanding Sensor Based on 3ω Technique for Thermal-Conductivity Measurement of Solids, Liquids, and Nanopowders

机译:基于3ω技术的独立式固体,液体和纳米粉热导率传感器的设计与应用

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摘要

A practical and reusable freestanding sensor based on the 3ω technique is fabricated by encapsulating a nano-thick nickel detector between two pieces of Kapton film. Because of the protection of the Kapton layer, the mechanical strength and applicability of the sensor are greatly improved compared with the traditional 3ω sensor. Furthermore, the nondestructive thermal-conductivity characterization for solids, liquids, and nanopowder specimens based on the 3ω technique is first realized. However, the introduction of the additional protective film also induces an undesirable decrease in accuracy for the thermal-conductivity measurement. This article discusses the underlying reason for this decreased accuracy and accordingly proposes an error correction scheme for accurate determination of the thermal conductivity.
机译:通过将纳米厚度的镍检测器封装在两片Kapton膜之间,可以制造出基于3ω技术的实用且可重复使用的独立传感器。由于保护了Kapton层,与传统的3ω传感器相比,该传感器的机械强度和适用性大大提高。此外,首先实现了基于3ω技术的固体,液体和纳米粉体样品的无损导热特性。然而,附加保护膜的引入还引起导热率测量的精度的不期望的降低。本文讨论了这种降低精度的根本原因,并因此提出了一种用于正确确定导热系数的误差校正方案。

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