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The confinement of phonon propagation in TiAlN/Ag multilayer coatings with anomalously low heat conductivity

机译:导热率异常低的TiAlN / Ag多层涂层中声子传播的限制

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摘要

TiAlN/Ag multilayer coatings with a different number of bilayers and thicknesses of individual layers were fabricated by DC magnetron co-sputtering. Thermal conductivity was measured in dependence of Ag layer thickness. It was found anomalous low thermal conductivity of silver comparing to TiAlN and Ag bulk standards and TiAlN/TiN multilayers. The physical nature of such thermal barrier properties of the multilayer coatings was explained on the basis of reflection electron energy loss spectroscopy. The analysis shows that nanostructuring of the coating decreases the density of states and velocity of acoustic phonons propagation. At the same time, multiphonon channels of heat propagation degenerate. These results demonstrate that metal-dielectric interfaces in TiAlN/Ag coatings are insurmountable obstacles for acoustic phonons propagation.
机译:通过直流磁控共溅射制备了具有不同双层数和单层厚度的TiAlN / Ag多层涂层。根据Ag层的厚度测量热导率。发现与TiAlN和Ag块状标准品以及TiAlN / TiN多层板相比,银的反常低导热性。在反射电子能量损失光谱学的基础上解释了多层涂层的这种热障性能的物理性质。分析表明,涂层的纳米结构降低了状态密度和声子传播的速度。同时,传热的多声子通道退化。这些结果表明,TiAlN / Ag涂层中的金属-电介质界面是声子传播的不可逾越的障碍。

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