A CAD-oriented system is proposed for the design of complex-shaped functional cloth, provided with a physics-based modelling core for simulation and virtual prototyping tasks. Textiles are physically modelled as particle grids in 3D space subjected to Newtonian dynamics, with internal spring, bending and shear forces derived from KES-F data measuring material behaviour Interactions with the environment are expressed as external forces, collisions against obstacles, self-collisions and constraints. Differently from physicsbased animation systems, the proposed system is conceived for real design purposes, and includes functionalities emulating the construction process of actual clothing and structural textiles, e.g., mesh sewing~assembly, insertion of small components, multilayered fabric composition, mechanical shape deformation, and 2D-to-3D mapping methods. As applications, several cases of textile configurations are considered, with geometric models directly provided by industrial companies and presenting different levels of design complexities, such as garment models (e.g., men's jackets)for the clothing sector, or functional textiles used in the automotive industry (e.g., soft ear tops).

Physics-based modelling and simulation of functional cloth for virtual prototyping applications

RIZZI, Caterina;
2004-01-01

Abstract

A CAD-oriented system is proposed for the design of complex-shaped functional cloth, provided with a physics-based modelling core for simulation and virtual prototyping tasks. Textiles are physically modelled as particle grids in 3D space subjected to Newtonian dynamics, with internal spring, bending and shear forces derived from KES-F data measuring material behaviour Interactions with the environment are expressed as external forces, collisions against obstacles, self-collisions and constraints. Differently from physicsbased animation systems, the proposed system is conceived for real design purposes, and includes functionalities emulating the construction process of actual clothing and structural textiles, e.g., mesh sewing~assembly, insertion of small components, multilayered fabric composition, mechanical shape deformation, and 2D-to-3D mapping methods. As applications, several cases of textile configurations are considered, with geometric models directly provided by industrial companies and presenting different levels of design complexities, such as garment models (e.g., men's jackets)for the clothing sector, or functional textiles used in the automotive industry (e.g., soft ear tops).
book chapter - capitolo di libro
Inglese
2004
AA.VV.
1811-7783
267
272
Simulation and modelling;Computer-aided engineering;Computer-aided design
La versione elettroniuca dei proceedings è disponibile al sito http://diglig.eg.org
info:eu-repo/semantics/bookPart
none
1.2 Contributi in volume - Book chapters::1.2.01 Contributi in volume (Capitoli o Saggi) - Book Chapters/Essays
no full text
Rizzi, Caterina; Fontana, Marzia; Cugini, Umberto
3
268
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/20272
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