2022, Vol. 7, No. 3. - go to content...
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Novozhilov A.I., Kuzmin A.G., Tyurin I.N., Kholodnova E.V., Tashpulatov S.Sh. Development of a method for manufacturing and fixing finishing 3D-printed elements of garments with complex relief. Journal of Clothing Science. 2022; 7(3). Available at: https://kostumologiya.ru/PDF/14TLKL322.pdf (in Russian).
Development of a method for manufacturing and fixing finishing 3D-printed elements of garments with complex relief
Novozhilov Anton Igorevich
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
Kuzmin Artur Gennadʹevich
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: kuzmin-ag@rguk.ru
Tyurin Igorʹ Nikolaevich
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: tyurin-in@rguk.ru
Kholodnova Elena Vladimirovna
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: Kholodnova-ev@rguk.ru
Tashpulatov Salih Shukurovich
Tashkent Institute of Textile and Light Industry, Tashkent, Republic of Uzbekistan
E-mail: Ssh61@mail.ru
Abstract. 3D printing has gained popularity in the field of layout and prototyping, the technology is successfully used in many areas, including textiles. The paper presents an analysis of modern finishing elements of garments. As part of the research work, a number of experiments were carried out on applying 3D-printed forms from Flex-filament to fabric substrates made of calico, gabardine, waffle fabric and other textile materials. The optimal conditions for applying polymer molds from Flex-material to the tested textile materials have been studied and found. The temperature and pressure of the manual heat press are the key parameters for high adhesion of models to the substrate. A number of experiments were carried out using solid-state tooling to improve pressure distribution during fixation of 3D printed forms. The quality of applying and fixing finishing 3D-printed elements of garments with complex relief has been studied.
Keywords: 3D printing; finishing elements; innovations in finishing; heat setting
This work is licensed under a Creative Commons Attribution 4.0 License.
ISSN 2587-8026 (Online)
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