A novel route to process rationalisation on cellulose dyeing

This research work presents an altercation on dyeing machine controlling parameters, particularly in terms of the relation between the effect of different factors i.e. reel speed (m min−1), cycle time (min), pump pressure (%) and nozzle position (%) on color strength (K/S) property of different type...

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Main Authors: Pervez Md. Nahid, Hoque Mohammed Akramul, Yu Liping, Rinkon Md. Moshfique Hossain, Amin Md. Salman, Ehsan Md. Nazmul, Cai Yingjie
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201710803005
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author Pervez Md. Nahid
Hoque Mohammed Akramul
Yu Liping
Rinkon Md. Moshfique Hossain
Amin Md. Salman
Ehsan Md. Nazmul
Cai Yingjie
author_facet Pervez Md. Nahid
Hoque Mohammed Akramul
Yu Liping
Rinkon Md. Moshfique Hossain
Amin Md. Salman
Ehsan Md. Nazmul
Cai Yingjie
author_sort Pervez Md. Nahid
collection DOAJ
description This research work presents an altercation on dyeing machine controlling parameters, particularly in terms of the relation between the effect of different factors i.e. reel speed (m min−1), cycle time (min), pump pressure (%) and nozzle position (%) on color strength (K/S) property of different type’s cotton fabric, so only the process controlling parameters were varied; the material used for the study remained the aforementioned throughout. The optimum reel speed, cycle time, pump pressure and nozzle position were found to be 240 m min−1, 2.5 min, 60% and 70% respectively for winch dyeing machine with respect to cellulose materials. This work is useful in selecting optimum values of various controlling parameters that would not alone approve the process rationalisation but as well reduce the fabric consumption and advance the superior of the dyed fabric on applied imminence.
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spelling doaj.art-d95593a7436e4fdba76c47fe3f8dd8ca2022-12-21T19:39:27ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011080300510.1051/matecconf/201710803005matecconf_icmaa2017_03005A novel route to process rationalisation on cellulose dyeingPervez Md. NahidHoque Mohammed Akramul0Yu Liping1Rinkon Md. Moshfique Hossain2Amin Md. Salman3Ehsan Md. Nazmul4Cai YingjieDepartment of Textile Engineering, Southeast UniversityZhejiang Institute of Modern Textile IndustryDepartment of Textile Engineering, Southeast UniversityDepartment of Textile Engineering, Southeast UniversityDepartment of Textile Engineering, Southeast UniversityThis research work presents an altercation on dyeing machine controlling parameters, particularly in terms of the relation between the effect of different factors i.e. reel speed (m min−1), cycle time (min), pump pressure (%) and nozzle position (%) on color strength (K/S) property of different type’s cotton fabric, so only the process controlling parameters were varied; the material used for the study remained the aforementioned throughout. The optimum reel speed, cycle time, pump pressure and nozzle position were found to be 240 m min−1, 2.5 min, 60% and 70% respectively for winch dyeing machine with respect to cellulose materials. This work is useful in selecting optimum values of various controlling parameters that would not alone approve the process rationalisation but as well reduce the fabric consumption and advance the superior of the dyed fabric on applied imminence.https://doi.org/10.1051/matecconf/201710803005
spellingShingle Pervez Md. Nahid
Hoque Mohammed Akramul
Yu Liping
Rinkon Md. Moshfique Hossain
Amin Md. Salman
Ehsan Md. Nazmul
Cai Yingjie
A novel route to process rationalisation on cellulose dyeing
MATEC Web of Conferences
title A novel route to process rationalisation on cellulose dyeing
title_full A novel route to process rationalisation on cellulose dyeing
title_fullStr A novel route to process rationalisation on cellulose dyeing
title_full_unstemmed A novel route to process rationalisation on cellulose dyeing
title_short A novel route to process rationalisation on cellulose dyeing
title_sort novel route to process rationalisation on cellulose dyeing
url https://doi.org/10.1051/matecconf/201710803005
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