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Volume 9, Issue 3
Research of Parametric Design System for Mould Head Based on Personalized Brassiere Customization

Long Wu, Kit-Lun Yick, Joanne Yip & Sun-Pui Ng

Journal of Fiber Bioengineering & Informatics, 9 (2016), pp. 177-186.

Published online: 2016-09

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  • Abstract
The intimate apparel market is changing towards the personalized consumption environment rapidly. On one hand, consumers' behaviour is more selective; On the other hand, brassiere design and development cycle are getting shorter and shorter. Mould head design is a key process in producing brassieres. A master cone which is the prototype of the mould head can be developed by a novel parametric method. The example-based method can easily make a new mould head style from several existing styles of master cones only by adjusting corresponding weights. Through the remeshing and registration algorithm, designer can characterize the outer surfaces of the mould head and scanned bra cups, aligning them each other at a point with same topology for assessing deviation. The results from this paper provide a scientific, practical and effective solution for intimate apparel manufacturers so that they can improve the development process of mould heads.
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@Article{JFBI-9-177, author = {}, title = {Research of Parametric Design System for Mould Head Based on Personalized Brassiere Customization}, journal = {Journal of Fiber Bioengineering and Informatics}, year = {2016}, volume = {9}, number = {3}, pages = {177--186}, abstract = {The intimate apparel market is changing towards the personalized consumption environment rapidly. On one hand, consumers' behaviour is more selective; On the other hand, brassiere design and development cycle are getting shorter and shorter. Mould head design is a key process in producing brassieres. A master cone which is the prototype of the mould head can be developed by a novel parametric method. The example-based method can easily make a new mould head style from several existing styles of master cones only by adjusting corresponding weights. Through the remeshing and registration algorithm, designer can characterize the outer surfaces of the mould head and scanned bra cups, aligning them each other at a point with same topology for assessing deviation. The results from this paper provide a scientific, practical and effective solution for intimate apparel manufacturers so that they can improve the development process of mould heads.}, issn = {2617-8699}, doi = {https://doi.org/10.3993/jfbim00244}, url = {http://global-sci.org/intro/article_detail/jfbi/10601.html} }
TY - JOUR T1 - Research of Parametric Design System for Mould Head Based on Personalized Brassiere Customization JO - Journal of Fiber Bioengineering and Informatics VL - 3 SP - 177 EP - 186 PY - 2016 DA - 2016/09 SN - 9 DO - http://doi.org/10.3993/jfbim00244 UR - https://global-sci.org/intro/article_detail/jfbi/10601.html KW - Mould head KW - Foam KW - Bra cup KW - Conformity AB - The intimate apparel market is changing towards the personalized consumption environment rapidly. On one hand, consumers' behaviour is more selective; On the other hand, brassiere design and development cycle are getting shorter and shorter. Mould head design is a key process in producing brassieres. A master cone which is the prototype of the mould head can be developed by a novel parametric method. The example-based method can easily make a new mould head style from several existing styles of master cones only by adjusting corresponding weights. Through the remeshing and registration algorithm, designer can characterize the outer surfaces of the mould head and scanned bra cups, aligning them each other at a point with same topology for assessing deviation. The results from this paper provide a scientific, practical and effective solution for intimate apparel manufacturers so that they can improve the development process of mould heads.
Long Wu, Kit-Lun Yick, Joanne Yip & Sun-Pui Ng. (2019). Research of Parametric Design System for Mould Head Based on Personalized Brassiere Customization. Journal of Fiber Bioengineering and Informatics. 9 (3). 177-186. doi:10.3993/jfbim00244
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