Author:
Mozafary Vajiha,Payvandy Pedram
Abstract
Purpose
Fabric-object friction force is a fundamental factor in cloth simulation. A large number of parameters influence the frictional properties of fabrics such as fabric structure, yarn structure, and inherent properties of component fibers. The purpose of this paper is to propose a novel technique for modeling fabric-object friction force in knitted fabric simulation based on the mass spring model.
Design/methodology/approach
In this technique, unlike other studies, distribution of friction coefficient over the fabric surface is not uniform and depends on the fabric structure. The main reason for considering non-uniform distribution is that in various segments of fabric, contact percent of fabric-object is different.
Findings
The proposed technique and common methods based on friction coefficient uniform distribution are used to simulate the frictional behavior of knitted fabrics. The results show that simulation error values for proposed technique and common methods are 2.7 and 9.4 percent as compared with the experimental result, respectively.
Originality/value
In the existing methods of the friction force modeling, the friction coefficient of fabric is assumed uniform. But this assumption is not correct because fabric does not have an isotropic structure. Thus in this study, the friction coefficient distribution is considered based on fabric structure to achieve more of realistic simulations.
Subject
Polymers and Plastics,General Business, Management and Accounting,Materials Science (miscellaneous),Business, Management and Accounting (miscellaneous)
Reference13 articles.
1. Fabric smoothness, friction, and handle;Textile Research Journal,1992
2. Experiments and modelling of skin-knitted fabric friction;Wear,2010
3. Relationship between friction and tactile properties for woven and knitted fabrics;Textile research Journal,2007
4. Robust treatment of collisions, contact and friction for cloth animation,2002
5. A comparative theoretical analysis for a knitted loop model;International Journal of Engineering,1999
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3 articles.
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