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Study and comparison techniques in fabric simulation using mass spring model

Vajiha Mozafary (Department of Textile Engineering, Yazd University, Yazd, Iran)
Pedram Payvandy (Department of Textile Engineering, Yazd University, Yazd, Iran)

International Journal of Clothing Science and Technology

ISSN: 0955-6222

Article publication date: 5 September 2016

480

Abstract

Purpose

The purpose of this paper is to conduct a survey on research in fabric and cloth simulation using mass spring model. Also in this paper some of the common methods in process of fabric simulation in mass spring model are discussed and compared.

Design/methodology/approach

This paper reviews and compares presented mesh types in mass spring model, forces applied on model, super elastic effect and ways to settle the super elasticity problem, numerical integration methods for solving equations, collision detection and its response. Some of common methods in fabric simulation are compared to each other. And by using examples of fabric simulation, advantages and limitations of each technique are mentioned.

Findings

Mass spring method is a fast and flexible technique with high ability to simulate fabric behavior in real time with different environmental conditions. Mass spring model has more accuracy than geometrical models and also it is faster than other physical modeling.

Originality/value

In the edge of digital, fabric simulation technology has been considered into many fields. 3D fabric simulation is complex and its implementation requires knowledge in different fields such as textile engineering, computer engineering and mechanical engineering. Several methods have been presented for fabric simulation such as physical and geometrical models. Mass spring model, the typical physically based method, is one of the methods for fabric simulation which widely considered by researchers.

Keywords

Citation

Mozafary, V. and Payvandy, P. (2016), "Study and comparison techniques in fabric simulation using mass spring model", International Journal of Clothing Science and Technology, Vol. 28 No. 5, pp. 634-689. https://doi.org/10.1108/IJCST-03-2015-0033

Publisher

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Emerald Group Publishing Limited

Copyright © 2016, Emerald Group Publishing Limited

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