Drape test of fully formed knitted flared skirts based on 3D-printed human body posture
This study proposes a novel drape test method for fully formed knitted flared skirts, specifically tailored to account for the three-dimensional (3D) morphology of the human body. The objective is to accurately assess the drape characteristics of such skirts by developing a comprehensive testing app...
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Format: | Article |
Language: | English |
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De Gruyter
2024-12-01
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Series: | AUTEX Research Journal |
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Online Access: | https://doi.org/10.1515/aut-2024-0017 |
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author | Cheng Bilian Jiang Gaoming Zhang Fanglue Wan Ailan Liu Haisang Li Bingxian Gao Lizhong |
author_facet | Cheng Bilian Jiang Gaoming Zhang Fanglue Wan Ailan Liu Haisang Li Bingxian Gao Lizhong |
author_sort | Cheng Bilian |
collection | DOAJ |
description | This study proposes a novel drape test method for fully formed knitted flared skirts, specifically tailored to account for the three-dimensional (3D) morphology of the human body. The objective is to accurately assess the drape characteristics of such skirts by developing a comprehensive testing approach. First, a 3D human body model in multiple postures was created using 3ds-Max modeling software and then printed with a 3D printer to serve as a customized test stand. The design and knitting principles for the fully formed flared skirt were examined, and samples were produced using a Shima Seiki four-needle bed computerized flat knitting machine. After fitting the skirt samples onto the 3D-printed human model, drape characteristics were measured with a YG811 drape tester. Using 18 sample skirts, the drape data were analyzed with SPSS26.0 software, revealing that the 3D-printed human model method allows for precise measurement of the drape in fully formed knitted fabrics. This approach offers a more realistic and accurate assessment of drapes, contributing valuable insights for textile design and evaluation in knitted garment production. |
format | Article |
id | doaj-art-7aaaa27197cc42fbb00dd911530832ee |
institution | Kabale University |
issn | 2300-0929 |
language | English |
publishDate | 2024-12-01 |
publisher | De Gruyter |
record_format | Article |
series | AUTEX Research Journal |
spelling | doaj-art-7aaaa27197cc42fbb00dd911530832ee2025-01-07T07:55:28ZengDe GruyterAUTEX Research Journal2300-09292024-12-0124147949710.1515/aut-2024-0017Drape test of fully formed knitted flared skirts based on 3D-printed human body postureCheng Bilian0Jiang Gaoming1Zhang Fanglue2Wan Ailan3Liu Haisang4Li Bingxian5Gao Lizhong6School of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, ChinaSchool of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, ChinaSchool of Engineering and Computer Science, Victoria University of Wellington, 6012, Wellington, New ZealandSchool of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, ChinaSchool of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, ChinaSchool of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, ChinaInner Mongolia Erdos Resources Co. Ltd, Inner Mongolia, 017000, ChinaThis study proposes a novel drape test method for fully formed knitted flared skirts, specifically tailored to account for the three-dimensional (3D) morphology of the human body. The objective is to accurately assess the drape characteristics of such skirts by developing a comprehensive testing approach. First, a 3D human body model in multiple postures was created using 3ds-Max modeling software and then printed with a 3D printer to serve as a customized test stand. The design and knitting principles for the fully formed flared skirt were examined, and samples were produced using a Shima Seiki four-needle bed computerized flat knitting machine. After fitting the skirt samples onto the 3D-printed human model, drape characteristics were measured with a YG811 drape tester. Using 18 sample skirts, the drape data were analyzed with SPSS26.0 software, revealing that the 3D-printed human model method allows for precise measurement of the drape in fully formed knitted fabrics. This approach offers a more realistic and accurate assessment of drapes, contributing valuable insights for textile design and evaluation in knitted garment production.https://doi.org/10.1515/aut-2024-0017knitted flared skirt3d-printed human bodyforming principledrape testprincipal component analysis |
spellingShingle | Cheng Bilian Jiang Gaoming Zhang Fanglue Wan Ailan Liu Haisang Li Bingxian Gao Lizhong Drape test of fully formed knitted flared skirts based on 3D-printed human body posture AUTEX Research Journal knitted flared skirt 3d-printed human body forming principle drape test principal component analysis |
title | Drape test of fully formed knitted flared skirts based on 3D-printed human body posture |
title_full | Drape test of fully formed knitted flared skirts based on 3D-printed human body posture |
title_fullStr | Drape test of fully formed knitted flared skirts based on 3D-printed human body posture |
title_full_unstemmed | Drape test of fully formed knitted flared skirts based on 3D-printed human body posture |
title_short | Drape test of fully formed knitted flared skirts based on 3D-printed human body posture |
title_sort | drape test of fully formed knitted flared skirts based on 3d printed human body posture |
topic | knitted flared skirt 3d-printed human body forming principle drape test principal component analysis |
url | https://doi.org/10.1515/aut-2024-0017 |
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