布料的接缝和弯曲模拟

S. Pabst, S. Krzywinski, A. Schenk, B. Thomaszewski
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引用次数: 30

摘要

布料弯曲性能的精确建模是布料仿真领域的重要课题之一。抗弯刚度可能是描述给定纺织品的最重要的材料参数。近年来,为了在布料模拟系统中快速真实地再现弯曲的效果,已经做了很多工作。然而,这些方法通常将纺织品视为由单一的、均匀的材料组成。到目前为止,还没有考虑接缝、衬布和多层材料的影响。最近的研究表明,织物的弯曲刚度受接缝的存在有很大的影响,一个好的布料模拟系统需要考虑这些影响。在这项工作中,我们展示了如何在最先进的布料模拟系统中实现弯曲和接缝的精确建模。我们的系统可以利用测量的弯曲刚度数据,但也允许直观的用户控制,如果需要的话。我们在模拟中使用虚拟悬垂测试和服装验证我们的方法,并将结果与现实世界的对应产品进行比较。此外,我们还提供了从测量中得出的启发式方法,可用于近似几种常见类型的煤层的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seams and Bending in Cloth Simulation
Accurate modeling of bending behavior is one of the most important tasks in the field of cloth simulation. Bending stiffness is probably the most significant material parameter describing a given textile. Much work has been done in recent years to allow a fast and authentic reproduction of the effect of bending in cloth simulation systems. However, these approaches usually treat the textiles as consisting of a single, homogeneous material. The effects of seams, interlining and multilayer materials have not been considered so far. Recent work showed that the bending stiffness of a textile is greatly influenced by the presence of seams and that a good cloth simulation system needs to consider these effects. In this work we show how accurate modeling of bending and seams can be achieved in a state-of-the-art cloth simulation system. Our system can make use of measured bending stiffness data, but also allows intuitive user control, if desired. We verify our approach using virtual draping tests and garments in the simulation and comparing the results to their real-world counterparts. Furthermore, we provide heuristics derived from measurements that can be used to approximate the influence of several common types of seams.
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