Estimation of yarn-level simulation models for production fabrics

Author:

Sperl Georg1,Sánchez-Banderas Rosa M.2,Li Manwen3,Wojtan Chris1,Otaduy Miguel A.4

Affiliation:

1. Institute of Science and Technology Austria, Austria

2. SEDDI, Madrid, Spain

3. Under Armour

4. Universidad Rey Juan Carlos, Spain

Abstract

This paper introduces a methodology for inverse-modeling of yarn-level mechanics of cloth, based on the mechanical response of fabrics in the real world. We compiled a database from physical tests of several different knitted fabrics used in the textile industry. These data span different types of complex knit patterns, yarn compositions, and fabric finishes, and the results demonstrate diverse physical properties like stiffness, nonlinearity, and anisotropy. We then develop a system for approximating these mechanical responses with yarn-level cloth simulation. To do so, we introduce an efficient pipeline for converting between fabric-level data and yarn-level simulation, including a novel swatch-level approximation for speeding up computation, and some small-but-necessary extensions to yarn-level models used in computer graphics. The dataset used for this paper can be found at http://mslab.es/projects/YarnLevelFabrics.

Funder

European Research Council

Institute of Science and Technology Austria

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

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