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The drape coefficient of the created composite structure is evaluated using a drape tester built according to EN ISO 9073-9. The scope of this work is to evaluate the effect of various 3D printed geometries on textile fabric regarding fabric drapes.
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Composite structures created by 3D printing and textile fabric change a drape by improving or worsening its appearance. Among these applications, an interesting one is 3D printing on textile fabric. Therefore further consistent studies are needed for resolving limitations in this area on the synergistic effects of simulation parameters on 3D garment drape simulation.Īpplications of 3D printing in the fashion industry have continued to attract interest from academia and industry in order to improve and add functionalities to products. The results reveal that there is still a fundamental problem regarding the introduction of real fabric physical and seam properties during garment drape simulation. The simulation parameters observed influence drape simulations of the 3D virtual fabrics and 3D garments depending on the fabric properties and pattern piece sizes. A comparison between the orthogonal projections of the real and virtual fabric drapes based on the Cusic method was performed and between the appear- ances and dimensions of the real and 3D virtual garments. Properties were measured by using the FAST measuring system and drape parameters by a Cusic Drape Tester. Drape simulations of fabrics and garments were analysed by using the OptiTex 3D commercial CAD system for different fabrics, of which low-stress mechanical the solver setting, soft bending and resolution were investigated. The effects on the modified appearances of 3D virtual garments due to the simulated parameters, i.e. This paper presents research into simulating parameters effects on 3D garment drape simulations with the aim of examining influential parameters regarding the accuracies of the appearances of virtual garments.
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