首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >THE EFFECT OF INTERFACE RESISTANCES ON THERMAL WAVE PROPAGATION IN MULTI-LAYERED SAMPLES
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THE EFFECT OF INTERFACE RESISTANCES ON THERMAL WAVE PROPAGATION IN MULTI-LAYERED SAMPLES

机译:多层样品中界面电阻对热波传播的影响

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摘要

In this paper a rigorous three-dimensional theoretical model describing the temperature distribution in multi-layered samples, heated by an intensity-modulated Gaussian laser beam, is presented. The thermal interface resistances and the thermal conductivity anisotropy of one of the layers are taken into consideration. The three-dimensional thermal diffusion model is used to investigate the effect of thermal interface resistances on thermal conduction in three-layered samples, which is monitored in terms of the dependences of the amplitude and phase of the surface temperature rise of the sample on the modulation frequency of the excitation beam. The theoretical results can be used as a means of quantitative interpretation for the determination of interfacial thermal resistances in layered materials with modulated photothermal techniques. A direct comparison between the one- and three-dimensional theoretical models for thermal conduction in layered materials is also presented. [References: 23]
机译:本文提出了一个严格的三维理论模型,该模型描述了由强度调制的高斯激光束加热的多层样品中的温度分布。考虑了其中一层的热界面电阻和热导率各向异性。三维热扩散模型用于研究热界面电阻对三层样品中热传导的影响,可根据样品表面温度升高的幅度和相位对调制的依赖性进行监控激发光束的频率。理论结果可作为定量解释的手段,用于通过调制光热技术确定层状材料中的界面热阻。还介绍了层状材料中热传导的一维和三维理论模型之间的直接比较。 [参考:23]

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