Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2023, Cilt: 33 Sayı: 2, 152 - 160, 30.06.2023
https://doi.org/10.32710/tekstilvekonfeksiyon.1063914

Öz

Kaynakça

  • 1. Spahiu, T., Manavis, A., Kazlacheva, Z., Almeida, H., Kyratsis, P. 2021. Industry 4.0 for fashion products – Case studies using 3D technology. IOP Conference Series: Materials Science and Engineering 1031(1), 012039, 1-9.
  • 2. Kirchherr, J., Reike, D., Hekkert, M 2017. Conceptualizing the circular economy: An analysis of 114 definitions. Resources, Conservation & Recycling 127, 221-232. DOI: 10.1016/j.resconrec.2017.09.005
  • 3. Mukendi, A., Davies, I., Glozer, S., McDonagh, P. 2020. Sustainable fashion: current and future research directions. European Journal of Marketing 54(11), 2873-2909. DOI: 10.1108/EJM-02-2019-0132
  • 4. Ilieș, D., Hodor, N., Indrie, L., Dejeu, P., Ilieș, A., Albu, A., Caciora, T., Ilieș, M., Barbu-Tudoran, L., Grama, V. 2021. Investigations of the Surface of Heritage Objects and Green Bioremediation: Case Study of Artefacts from Maramureş, Romania. Applied Science 11, 6643, 1-15. DOI:10.3390/app11146643,
  • 5. Zhang, C-T., Wang, Z. 2021. Production Mode and Pricing Coordination Strategy of Sustainable Products Considering Consumers’ Preference. Cleaner Production 296, 126476, 1-14. DOI: 10.1016/j.jclepro.2021.126476
  • 6. Rudolf, A., Zadravec, M., Stjepanović, Z. 2016. Investigations regarding the effects of simulating parameters during 3D garments' drape simulations. Fibres & Textiles in Eastern Europe 2016 24(6) 120, 143-150. DOI: 10.5604/12303666.1221749
  • 7. Han, M-G., Chang, S-H. 2018. Draping simulation of carbon/epoxy plain weave fabrics with non-orthogonal constitutive model and material behavior analysis of the cured structure. Composites Part A: Applied Science and Manufacturing 110, 172-182. DOI: 10.1016/j.compositesa.2018.04.022
  • 8. Petrak, S., Naglic, M., Rogale, D., Geršak J. 2021. Analysis of polygonal computer model parameters and influence on fabric drape simulation. Materials 14, 6259, 1-15.
  • 9. Kim, J. 2015. A study on the fabric drape evaluation using a 3D scanning system based on depth camera with elevating device. Journal of Fashion Business 19(6), 28-41. DOI: 10.12940/jfb.2015.19.6.28
  • 10. Efendioglu, N., Mutlu, M., Pamuk, O. 2021. An investigation on usability of 3D visualization and simulation programs in leather apparel. The Journal of the Textile Institute 112, 1-16. DOI: 10.1080/00405000.2021.1938860
  • 11. Ju, E., Choi, M. 2020. Estimating cloth simulation parameters from a static drape using neural networks. IEEE Access 8, 195113-195121
  • 12. Bhat, K., Twigg, C., Hodgins, J., Khosla, P., Popović, Z., Seitz, S. 2003. Estimating cloth simulation parameters from video. In Proceedings of the 2003 ACM SIGGRAPH/Eurographics symposium on Computer animation (SCA '03). Eurographics Association, Goslar, DEU, 37-51.
  • 13. Cameron, C., Hoos, H., Leyton-Brown, K. 2016. Bias in Algorithm Portfolio Performance Evaluation. Proceedings of the Twenty-Fifth International Joint Conference on Artificial Intelligence (IJCAI-16), 712-719.

An Algorithm for Obtaining 3D Forms of Draperies From Visual Images of Recycled Textile

Yıl 2023, Cilt: 33 Sayı: 2, 152 - 160, 30.06.2023
https://doi.org/10.32710/tekstilvekonfeksiyon.1063914

Öz

Adding economic value to textile waste, when developing fashion products from them, requires knowledge of their characteristics. In the present work, an algorithm for reproducing a three-dimensional shape from two-dimensional images of draperies is proposed. An analytical predictive model has been created for automated prediction of the step of the contours of draperies. This model depends on the execution time of the algorithm for creating three-dimensional shapes of draperies from used textiles. The optimal values of the step and the corresponding time for execution of the algorithm are determined. It has been proven that at step st=48 and execution time t=7s, sufficient accuracy of the three-dimensional simulation of used textile draperies is achieved. Software tools suitable for the study of draperies of used textile materials are proposed. The results of this study can be used to make interior textile accessories such as curtains, upholstery, tablecloths, napkins, blankets.

Kaynakça

  • 1. Spahiu, T., Manavis, A., Kazlacheva, Z., Almeida, H., Kyratsis, P. 2021. Industry 4.0 for fashion products – Case studies using 3D technology. IOP Conference Series: Materials Science and Engineering 1031(1), 012039, 1-9.
  • 2. Kirchherr, J., Reike, D., Hekkert, M 2017. Conceptualizing the circular economy: An analysis of 114 definitions. Resources, Conservation & Recycling 127, 221-232. DOI: 10.1016/j.resconrec.2017.09.005
  • 3. Mukendi, A., Davies, I., Glozer, S., McDonagh, P. 2020. Sustainable fashion: current and future research directions. European Journal of Marketing 54(11), 2873-2909. DOI: 10.1108/EJM-02-2019-0132
  • 4. Ilieș, D., Hodor, N., Indrie, L., Dejeu, P., Ilieș, A., Albu, A., Caciora, T., Ilieș, M., Barbu-Tudoran, L., Grama, V. 2021. Investigations of the Surface of Heritage Objects and Green Bioremediation: Case Study of Artefacts from Maramureş, Romania. Applied Science 11, 6643, 1-15. DOI:10.3390/app11146643,
  • 5. Zhang, C-T., Wang, Z. 2021. Production Mode and Pricing Coordination Strategy of Sustainable Products Considering Consumers’ Preference. Cleaner Production 296, 126476, 1-14. DOI: 10.1016/j.jclepro.2021.126476
  • 6. Rudolf, A., Zadravec, M., Stjepanović, Z. 2016. Investigations regarding the effects of simulating parameters during 3D garments' drape simulations. Fibres & Textiles in Eastern Europe 2016 24(6) 120, 143-150. DOI: 10.5604/12303666.1221749
  • 7. Han, M-G., Chang, S-H. 2018. Draping simulation of carbon/epoxy plain weave fabrics with non-orthogonal constitutive model and material behavior analysis of the cured structure. Composites Part A: Applied Science and Manufacturing 110, 172-182. DOI: 10.1016/j.compositesa.2018.04.022
  • 8. Petrak, S., Naglic, M., Rogale, D., Geršak J. 2021. Analysis of polygonal computer model parameters and influence on fabric drape simulation. Materials 14, 6259, 1-15.
  • 9. Kim, J. 2015. A study on the fabric drape evaluation using a 3D scanning system based on depth camera with elevating device. Journal of Fashion Business 19(6), 28-41. DOI: 10.12940/jfb.2015.19.6.28
  • 10. Efendioglu, N., Mutlu, M., Pamuk, O. 2021. An investigation on usability of 3D visualization and simulation programs in leather apparel. The Journal of the Textile Institute 112, 1-16. DOI: 10.1080/00405000.2021.1938860
  • 11. Ju, E., Choi, M. 2020. Estimating cloth simulation parameters from a static drape using neural networks. IEEE Access 8, 195113-195121
  • 12. Bhat, K., Twigg, C., Hodgins, J., Khosla, P., Popović, Z., Seitz, S. 2003. Estimating cloth simulation parameters from video. In Proceedings of the 2003 ACM SIGGRAPH/Eurographics symposium on Computer animation (SCA '03). Eurographics Association, Goslar, DEU, 37-51.
  • 13. Cameron, C., Hoos, H., Leyton-Brown, K. 2016. Bias in Algorithm Portfolio Performance Evaluation. Proceedings of the Twenty-Fifth International Joint Conference on Artificial Intelligence (IJCAI-16), 712-719.
Toplam 13 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Giyilebilir Malzemeler
Bölüm Makaleler
Yazarlar

Zlatin Zlatev 0000-0003-3080-5048

Julieta Georgieva Ilıeva 0000-0001-7659-0201

Erken Görünüm Tarihi 3 Temmuz 2023
Yayımlanma Tarihi 30 Haziran 2023
Gönderilme Tarihi 27 Ocak 2022
Kabul Tarihi 1 Kasım 2022
Yayımlandığı Sayı Yıl 2023 Cilt: 33 Sayı: 2

Kaynak Göster

APA Zlatev, Z., & Ilıeva, J. G. (2023). An Algorithm for Obtaining 3D Forms of Draperies From Visual Images of Recycled Textile. Textile and Apparel, 33(2), 152-160. https://doi.org/10.32710/tekstilvekonfeksiyon.1063914

No part of this journal may be reproduced, stored, transmitted or disseminated in any forms or by any means without prior written permission of the Editorial Board. The views and opinions expressed here in the articles are those of the authors and are not the views of Tekstil ve Konfeksiyon and Textile and Apparel Research-Application Center.