首页> 外文期刊>Journal of Applied Physics >Normal-directional and normal-hemispherical reflectances of micron- and submicron-sized powder beds at 633 and 790 nm
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Normal-directional and normal-hemispherical reflectances of micron- and submicron-sized powder beds at 633 and 790 nm

机译:微米和亚微米级粉末床在633和790 nm的法向和法向半球反射率

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摘要

A conic pyroelectric detector is employed to measure the effective reflectances of powder beds of metals, SiC, WC, and graphite. The experimental results are compared with numerical solutions of the radiation transfer equation in a half-infinite homogeneous body with effective radiative properties. The effective albedo and phase function are theoretically estimated by the model of opaque particles with specularly or diffusely reflecting surfaces in the assumption of geometrical optics. The studied powder beds with particles of several tens of microns in diameter are generally described by the model where specular reflection by particle surfaces is assumed corresponding to refraction and extinction indices of materials in the dense form. The model does not apply to semitransparent particles of SiC. The powder beds of submicron particles of SiC and WC are highly agglomerated and consist of clusters of particles with diameters of several tens of microns. A submicron powder bed is found to be considerably less reflective than a micron-sized powder bed of the same material. This is described by the model where the agglomerates of submicron particles are treated as large particles with diffusely reflecting surfaces. The effective normal-hemispherical reflectance of a micron-sized powder bed correlates with the hemispherical reflectance of dense material. The observed differences between the experiment and the model can be explained by a systematic error at calibration, oxidation of materials, and diffraction effects.
机译:圆锥热释电检测器用于测量金属,SiC,WC和石墨粉末床的有效反射率。将实验结果与具有有效辐射特性的半无限均匀物体中的辐射传递方程的数值解进行了比较。理论上,在几何光学的假设下,有效的反照率和相位函数由具有镜面反射或漫反射表面的不透明粒子模型估算。该模型通常描述所研究的直径为几十微米的粉末床,其中假定颗粒表面的镜面反射与致密形式材料的折射率和消光指数相对应。该模型不适用于SiC的半透明颗粒。 SiC和WC的亚微米级颗粒的粉末床高度团聚,并且由直径为几十微米的颗粒簇组成。发现亚微米粉末床的反射率比相同材料的微米尺寸粉末床低得多。这由模型描述,其中将亚微米颗粒的附聚物视为具有漫反射表面的大颗粒。微米级粉末床的有效法向半球反射率与致密材料的半球反射率相关。实验和模型之间观察到的差异可以通过校准,材料氧化和衍射效应方面的系统误差来解释。

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