Application of the Thermal Diffusivity Standard for the Heat Transfer Parameter Control in Absorbing Materials

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION
E. V. Ivakin
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引用次数: 0

Abstract

Metrological support creation and use of heat transfer etalons are important stages in the development of modern materials science. This is especially concerned to the emergence of new materials in the world with previously unattainable thermophysical parameters. The purpose of this work was to develop and experimentally verify the idea of joint application of the transient gratings method which is well-known in nonlinear optics and the single thermal diffusivity etalon of conventional type for the heat transfer metrological control in materials of a wide values range. The method proposed is based on thermal diffusivity etalon application as a source of calibrated optical signals that are excited in it by short laser pulses. Their lifetime is formed by the etalon thermal diffusivity and on the transient grating spatial period. The etalon linear graph of gratings lifetimes as a function of the gratings periods squared and grating lifetime of the material under study are used for the thermal diffusivity calculation. Thermal diffusivity of thin sub-surface layers of the samples under study – duraluminium, monocrystalline silicon and thermoelectric lead telluride film was measured. The results obtained are in close agreement with the reference values.
热扩散系数标准在吸波材料传热参数控制中的应用
传热标准子的创建和应用是现代材料科学发展的重要阶段。这尤其与世界上出现的具有以前无法获得的热物理参数的新材料有关。本工作的目的是发展并实验验证将非线性光学中众所周知的瞬态光栅方法与传统类型的单个热扩散系数标准子联合应用于大范围材料的传热计量控制的思想。该方法基于热扩散系数标准子作为标定光信号的源,由短激光脉冲激发。它们的寿命由标准子热扩散率和瞬态光栅空间周期决定。热扩散系数的计算采用光栅寿命与光栅周期平方和所研究材料的光栅寿命的线性线图。测量了所研究样品——硬铝、单晶硅和热电碲化铅薄膜的亚表面层的热扩散率。所得结果与参考值基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
自引率
25.00%
发文量
18
审稿时长
8 weeks
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