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Effects of Surface Irregularities and Coatings on Thermal Emittance of Selected Metals Between 373 and 1073 K

机译:表面不规则性和涂层对373和1073K之间选定金属热膨胀的影响

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摘要

In many areas of engineering, radiation heat transfer plays an important role and it is of great importance the knowledge of the thermal radiative properties of the surfaces involved. Radiation properties of solid materials are highly dependent on surface characteristics, e.g., surface roughness, surface damage, oxide layers, and deposited thin films, and cannot be assumed as those of pure materials, typically referred to optically smooth surfaces (OS). An experimental investigation of the thermal emittance of some metals (nickel, titanium, silver, and stainless steel) is presented. Experiments were conducted by using a radiometric apparatus able to measure the total normal emittance under different temperature and pressure conditions. The aim of this paper was to identify the separate roles of surface microgeometry alterations (surface roughness), surface damage, and surface coatings (i.e., presence of either thin films deposited onto a smooth surface or oxide layers formed on both smooth and rough surfaces) by undertaking carefully selected sets of experiments covering a relatively large temperature range.
机译:在许多工程领域,辐射传热起着重要作用,并且非常重要的作用,并且对所涉及的表面的热辐射性质的知识非常重要。固体材料的辐射性能高度依赖于表面特性,例如表面粗糙度,表面损坏,氧化物层和沉积的薄膜,并且不能被认为是纯材料的薄膜,通常称为光学光滑的表面(OS)。提出了对一些金属(镍,钛,银和不锈钢)的热膨胀的实验研究。通过使用能够测量不同温度和压力条件下的总正常发射率的辐射设备进行实验。本文的目的是识别表面微幼镜术改变(表面粗糙度),表面损伤和表面涂层的单独作用(即,沉积在光滑和粗糙表面上形成的光滑表面或氧化物层上的薄膜的存在)通过仔细选择覆盖相对较大的温度范围的实验组。

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