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Predictive rendering of composite materials: A multi-scale approach

机译:复合材料的预测渲染:多种方法

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Predictive rendering of material appearance means going deep into the understanding of the physical interaction between light and matter and how these interactions are perceived by the human brain. In this paper we describe our approach to predict the appearance of composite materials by relying on the multi-scale nature of the involved phenomena. Using recent works on physical modeling of complex materials, we show how to predict the aspect of a composite material based on its composition and its morphology. Specifically, we focus on the materials whose morphological structures are defined at several embedded scales. We rely on the assumption that when the inclusions in a composite material are smaller than the considered wavelength, the optical constants of the corresponding effective media can be computed by a homogenization process (or analytically for special cases) to be used into the Fresnel formulas.
机译:材料外观的预测渲染意味着深入了解光和物质之间的物理相互作用以及这些相互作用是如何被人脑感知的。在本文中,我们描述了我们通过依赖于所涉及的现象的多规模性质来预测复合材料的外观。利用近期作品对复杂材料的物理建模,我们展示了如何基于其组成及其形态来预测复合材料的方面。具体而言,我们专注于在几种嵌入尺度上定义的形态结构的材料。我们依靠假设,当复合材料中的夹杂物小于所考虑的波长时,相应的有效介质的光学常数可以通过均质化过程(或分析用于特殊情况)来计算以用于菲涅耳公式。

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