Comparative analysis of drape characteristics of actually and virtually draped fabrics

Author:

Buyukaslan Evrim,Jevsnik Simona,Kalaoglu Fatma

Abstract

Purpose The purpose of this paper is to compare real fabric drape images and virtual fabric drape images created by a commercial software. To achieve an in-depth comparison, actual and virtual drape shape properties were considered under three categories: drape area, number of nodes and shape of folds. The results of this research are expected to be useful to improve the reality and accuracy of fabric and garment. Design/methodology/approach Five different fabrics were selected for this study. Fabrics’ mechanical properties were tested by fabric assurance for simple testing method, while drape properties were measured by a Cusick drape meter. A commercial garment simulation was used to generate virtual fabric drapes. Real fabric drape images and virtual fabric drape images were analyzed by an image analysis software and results were used to calculate drape properties. Regression analysis was performed to compare real fabric drape and virtual fabric drape properties. Findings Differences between real fabric drape and virtual fabric drape were stated clearly. Simulation software was found to be insufficient to reflect drape area. However, simulations were quite successful corresponding to the number of nodes. Only one simulation had +2 nodes than its actual counterpart. This study showed that area and node shape representations of simulation software should be improved while node numbers are sufficiently represented. Research limitations/implications There are alternative 3D garment simulation software available to the fashion business. All these companies are working on to improve their simulation reality and accuracy. Some of them are also offering various equipment to measure the fabric properties. In this study, Optitex 3D Suite was selected as the simulation software due to several reasons as explained in this paper. However, other simulation programs might also be employed to perform virtual fabric drapes. Furthermore, in this study, the drape images of five woven fabrics were compared. The fabric selection was done according to a pre-test and consequently similar fabrics were determined to be the subject of the study. However, the more the number of the fabrics, the better the comparison and eventually the better the assessment of simulation success. Therefore, it is prospected to test more fabrics with versatile fabric properties for further studies. Originality/value Drape shape was observed from three perspectives: drape area, node numbers, and node shapes. Dealing the problem from these perspectives provided an in-depth comparison of real and virtual drapes. In this study, standard deviation of peak angles was used to explain node distribution that is new to the literature to the authors’ knowledge.

Publisher

Emerald

Subject

Polymers and Plastics,General Business, Management and Accounting,Materials Science (miscellaneous),Business, Management and Accounting (miscellaneous)

Reference43 articles.

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2. Drape measurement by digital image processing;Textile Asia,2003

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4. Bottino, A., Laurentini, A. and Scalabrin, S. (2001), “Dzdedwd (Ydoxdwlrq 6\Vwhp”, in University of West Bohemia (Ed.), Quantitavely Comparing Virtual and Real Draping of Clothes, University of West Bohemia, Plzen, available at: https://otik.uk.zcu.cz/handle/11025/11252 (accessed January 31, 2018).

5. British Standard Institute (1974), “Method for the assessment of drape of fabrics”, BS 5058, BSI, available at: http://shop.bsigroup.com/ProductDetail/?pid=000000000000087095 (accessed January 31, 2018).

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