首页> 外文会议>IUMRS International Conference in Asia;IUMRS-ICA; 20060910-14;20060910-14; Jeju(KR);Jeju(KR) >Characterization of anisotropic and irregularly-shaped materials by high-sensitive thermal conductivity measurements
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Characterization of anisotropic and irregularly-shaped materials by high-sensitive thermal conductivity measurements

机译:通过高灵敏的热导率测量表征各向异性和不规则形状的材料

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摘要

In modern thermal analysis and design involving thermal transport in solid components it is necessary to apply different modeling of the thermal heat flow in bulk material and across solid surface interfaces either in shape of a layer or a solid-solid interface. Similar differences occur when applying different measurement techniques. Some techniques have been developed specifically for the purpose of performing measurements of bulk properties by removing the influence from thermal contact resistance between the measurement probe and the sample material. Thermal conductivity measurements on metal and ceramic objects of various geometries such as thin bars, thin sheets as well as coatings or layers are here described when using the Transient Plane Source technique. A summary overview of the recent developments of this technique, including its ability to be applied in measurement situations covering a wide range of length and time scales, is also presented. Structural changes in anisotropy can be recorded with high sensitivity by comparative measurements. The technique may be applied in situations requiring non-destructive testing, e.g. samples of particular geometry used for mechanical or tensile testing.
机译:在涉及固体组分热传递的现代热分析和设计中,有必要对散装材料中的热热流进行不同的建模,并以层状或固体-固体界面的形式跨越固体表面界面。当应用不同的测量技术时,也会发生类似的差异。通过消除测量探针和样品材料之间的热接触电阻的影响,专门开发了一些技术来进行整体性能的测量。当使用瞬态平面源技术时,在此描述了对各种几何形状的金属和陶瓷物体(例如,细条,薄片以及涂层或层)的热导率测量。还概述了该技术的最新发展,包括其可用于覆盖各种长度和时间范围的测量情况的能力。通过比较测量可以高灵敏度地记录各向异性的结构变化。该技术可以应用于需要非破坏性测试的情况,例如用于机械或拉伸测试的特定几何形状的样品。

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