Physical reproduction of materials with specified subsurface scattering

Miloš Hašan, M. Fuchs, W. Matusik, H. Pfister, S. Rusinkiewicz
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引用次数: 142

Abstract

We investigate a complete pipeline for measuring, modeling, and fabricating objects with specified subsurface scattering behaviors. The process starts with measuring the scattering properties of a given set of base materials, determining their radial reflection and transmission profiles. We describe a mathematical model that predicts the profiles of different stackings of base materials, at arbitrary thicknesses. In an inverse process, we can then specify a desired reflection profile and compute a layered composite material that best approximates it. Our algorithm efficiently searches the space of possible combinations of base materials, pruning unsatisfactory states imposed by physical constraints. We validate our process by producing both homogeneous and heterogeneous composites fabricated using a multi-material 3D printer. We demonstrate reproductions that have scattering properties approximating complex materials.
具有特定次表面散射的材料的物理再现
我们研究了一个完整的管道来测量、建模和制造具有特定地下散射行为的物体。这个过程从测量一组给定基材的散射特性开始,确定它们的径向反射和透射曲线。我们描述了一个数学模型,该模型可以预测任意厚度下不同基材堆叠的轮廓。在逆向过程中,我们可以指定所需的反射剖面,并计算最接近它的层状复合材料。我们的算法有效地搜索基础材料可能组合的空间,修剪由物理约束施加的不满意状态。我们通过使用多材料3D打印机生产均质和非均质复合材料来验证我们的工艺。我们展示了具有近似复杂材料散射特性的复制品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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