Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects

According to the great impact of additive technology on the development of modern industry, a lot of research is being done to obtain 3D printed parts with better properties. This research is extremely important because there are no scientific papers in the field of post dyeing of acrylonitrile/buta...

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Autores principales: Suzana Kutnjak-Mravlinčić, Ana Sutlović, Martinia Ira Glogar, Sanja Ercegović Ražić, Damir Godec
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Lenguaje:EN
Publicado: MDPI AG 2021
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Acceso en línea:https://doaj.org/article/2a65435355ba47e68b1ffed86bb4c93c
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spelling oai:doaj.org-article:2a65435355ba47e68b1ffed86bb4c93c2021-11-11T18:36:25ZInnovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects10.3390/molecules262166371420-3049https://doaj.org/article/2a65435355ba47e68b1ffed86bb4c93c2021-11-01T00:00:00Zhttps://www.mdpi.com/1420-3049/26/21/6637https://doaj.org/toc/1420-3049According to the great impact of additive technology on the development of modern industry, a lot of research is being done to obtain 3D printed parts with better properties. This research is extremely important because there are no scientific papers in the field of post dyeing of acrylonitrile/butadiene/styrene (ABS) 3D printed parts. The experiment was carried out using disperse dyes on ABS specimens. The obtained coloration of the specimens was in the primary colors (yellow, red, and blue) in the specified dyestuff concentration range and was evaluated using an objective CIELab system. Based on the obtained color parameters, remission values and Kubelka-Munk coefficient, dye mixtures and an ombre effect were performed to obtain patterns in the desired hues. Abrasion resistance of disperse dyed specimens was tested using different abrasive materials over a wide range of fineness to simulate different indoor and outdoor soils and was compared to abrasion resistance of specimens produced from the industrially dyed wire with the master batch. The results show that 3D printed ABS products can be produced in one or more desired shades with satisfactory abrasion resistance. This undoubtedly represents the added value of 3D printed ABS parts and extends their application to the field of creative industries and design, specifically footwear design.Suzana Kutnjak-MravlinčićAna SutlovićMartinia Ira GlogarSanja Ercegović RažićDamir GodecMDPI AGarticleadditive manufacturing3D printingacrylonitrile/butadiene/styrene polymerbatch post dyeingdisperse dyesCIELab systemOrganic chemistryQD241-441ENMolecules, Vol 26, Iss 6637, p 6637 (2021)
institution DOAJ
collection DOAJ
language EN
topic additive manufacturing
3D printing
acrylonitrile/butadiene/styrene polymer
batch post dyeing
disperse dyes
CIELab system
Organic chemistry
QD241-441
spellingShingle additive manufacturing
3D printing
acrylonitrile/butadiene/styrene polymer
batch post dyeing
disperse dyes
CIELab system
Organic chemistry
QD241-441
Suzana Kutnjak-Mravlinčić
Ana Sutlović
Martinia Ira Glogar
Sanja Ercegović Ražić
Damir Godec
Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects
description According to the great impact of additive technology on the development of modern industry, a lot of research is being done to obtain 3D printed parts with better properties. This research is extremely important because there are no scientific papers in the field of post dyeing of acrylonitrile/butadiene/styrene (ABS) 3D printed parts. The experiment was carried out using disperse dyes on ABS specimens. The obtained coloration of the specimens was in the primary colors (yellow, red, and blue) in the specified dyestuff concentration range and was evaluated using an objective CIELab system. Based on the obtained color parameters, remission values and Kubelka-Munk coefficient, dye mixtures and an ombre effect were performed to obtain patterns in the desired hues. Abrasion resistance of disperse dyed specimens was tested using different abrasive materials over a wide range of fineness to simulate different indoor and outdoor soils and was compared to abrasion resistance of specimens produced from the industrially dyed wire with the master batch. The results show that 3D printed ABS products can be produced in one or more desired shades with satisfactory abrasion resistance. This undoubtedly represents the added value of 3D printed ABS parts and extends their application to the field of creative industries and design, specifically footwear design.
format article
author Suzana Kutnjak-Mravlinčić
Ana Sutlović
Martinia Ira Glogar
Sanja Ercegović Ražić
Damir Godec
author_facet Suzana Kutnjak-Mravlinčić
Ana Sutlović
Martinia Ira Glogar
Sanja Ercegović Ražić
Damir Godec
author_sort Suzana Kutnjak-Mravlinčić
title Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects
title_short Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects
title_full Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects
title_fullStr Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects
title_full_unstemmed Innovative Development of Batch Dyed 3D Printed Acrylonitrile/Butadiene/Styrene Objects
title_sort innovative development of batch dyed 3d printed acrylonitrile/butadiene/styrene objects
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/2a65435355ba47e68b1ffed86bb4c93c
work_keys_str_mv AT suzanakutnjakmravlincic innovativedevelopmentofbatchdyed3dprintedacrylonitrilebutadienestyreneobjects
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AT martiniairaglogar innovativedevelopmentofbatchdyed3dprintedacrylonitrilebutadienestyreneobjects
AT sanjaercegovicrazic innovativedevelopmentofbatchdyed3dprintedacrylonitrilebutadienestyreneobjects
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