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Anisotropic friction for deformable surfaces and solids

机译:变形表面和固体的各向异性摩擦

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This paper presents a method for simulating anisotropic friction for deforming surfaces and solids. Frictional contact is a complex phenomenon that fuels research in mechanical engineering, computational contact mechanics, composite material design and rigid body dynamics, to name just a few. Many real-world materials have anisotropic surface properties. As an example, most textiles exhibit direction-dependent frictional behavior, but despite its tremendous impact on visual appearance, only simple isotropic models have been considered for cloth and solid simulation so far. In this work, we propose a simple, application-oriented but physically sound model that extends existing methods to account for anisotropic friction. The sliding properties of surfaces are encoded in friction tensors, which allows us to model frictional resistance freely along arbitrary directions. We also consider heterogeneous and asymmetric surface roughness and demonstrate the increased simulation quality on a number of two- and three-dimensional examples. Our method is computationally efficient and can easily be integrated into existing systems.
机译:本文提出了一种模拟各向异性摩擦的方法,可以使表面和固体变形。摩擦接触是一种复杂的现象,它推动了机械工程,计算接触力学,复合材料设计和刚体动力学等方面的研究。许多现实世界的材料具有各向异性的表面特性。例如,大多数纺织品都表现出与方向有关的摩擦行为,但是尽管它对视觉外观产生了巨大影响,但到目前为止,对于布料和实体模拟,仅考虑了简单的各向同性模型。在这项工作中,我们提出了一个简单的,面向应用但物理上合理的模型,该模型扩展了现有方法以解决各向异性摩擦。表面的滑动特性以摩擦张量编码,这使我们能够沿任意方向自由建模摩擦阻力。我们还考虑了异质和不对称的表面粗糙度,并在许多二维和三维示例中证明了提高的仿真质量。我们的方法计算效率高,可以轻松集成到现有系统中。

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