Optimization of the combing noil percentage for quality single and ply compact spun yarn

No doubt that ring spinning will continue to remain the important yarn manufacturing system for the short staple spinning. Innovation has occurred through the introduction of compact spinning, which offers superior quality and better fiber utilization. With this technology, the problematic spinning...

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Main Authors: Magdi El Messiry, Naglaa Hosny, Gada Esmat
Format: Article
Language:English
Published: Elsevier 2013-09-01
Series:Alexandria Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1110016813000112
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author Magdi El Messiry
Naglaa Hosny
Gada Esmat
author_facet Magdi El Messiry
Naglaa Hosny
Gada Esmat
author_sort Magdi El Messiry
collection DOAJ
description No doubt that ring spinning will continue to remain the important yarn manufacturing system for the short staple spinning. Innovation has occurred through the introduction of compact spinning, which offers superior quality and better fiber utilization. With this technology, the problematic spinning triangle has been minimized, resulting in ideal yarn structure which is marked by a low degree of hairiness and higher tenacity. This study focused on the investigation of the effect of changing the fiber properties through controlling noil percentage on the structure parameters of compact single and plies yarns. From the analysis of the results, the optimum combing noil percentage for the production of Quality fine compact yarns at 5% Uster level for single or ply yarns can be achieved.
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spelling doaj.art-e744838a9a4444c2b84b6a41e528aed72022-12-21T18:27:51ZengElsevierAlexandria Engineering Journal1110-01682013-09-0152330731110.1016/j.aej.2013.01.004Optimization of the combing noil percentage for quality single and ply compact spun yarnMagdi El MessiryNaglaa HosnyGada EsmatNo doubt that ring spinning will continue to remain the important yarn manufacturing system for the short staple spinning. Innovation has occurred through the introduction of compact spinning, which offers superior quality and better fiber utilization. With this technology, the problematic spinning triangle has been minimized, resulting in ideal yarn structure which is marked by a low degree of hairiness and higher tenacity. This study focused on the investigation of the effect of changing the fiber properties through controlling noil percentage on the structure parameters of compact single and plies yarns. From the analysis of the results, the optimum combing noil percentage for the production of Quality fine compact yarns at 5% Uster level for single or ply yarns can be achieved.http://www.sciencedirect.com/science/article/pii/S1110016813000112Compact spinningCombingNoil percentagePly yarnHairiness
spellingShingle Magdi El Messiry
Naglaa Hosny
Gada Esmat
Optimization of the combing noil percentage for quality single and ply compact spun yarn
Alexandria Engineering Journal
Compact spinning
Combing
Noil percentage
Ply yarn
Hairiness
title Optimization of the combing noil percentage for quality single and ply compact spun yarn
title_full Optimization of the combing noil percentage for quality single and ply compact spun yarn
title_fullStr Optimization of the combing noil percentage for quality single and ply compact spun yarn
title_full_unstemmed Optimization of the combing noil percentage for quality single and ply compact spun yarn
title_short Optimization of the combing noil percentage for quality single and ply compact spun yarn
title_sort optimization of the combing noil percentage for quality single and ply compact spun yarn
topic Compact spinning
Combing
Noil percentage
Ply yarn
Hairiness
url http://www.sciencedirect.com/science/article/pii/S1110016813000112
work_keys_str_mv AT magdielmessiry optimizationofthecombingnoilpercentageforqualitysingleandplycompactspunyarn
AT naglaahosny optimizationofthecombingnoilpercentageforqualitysingleandplycompactspunyarn
AT gadaesmat optimizationofthecombingnoilpercentageforqualitysingleandplycompactspunyarn