Effect of Geometry on Performance of Interlacer

Interlacer is the key part of interlacing technology that is adopted to improve the cohesion between loose multifilaments. Aimed at finding the interlacers with better performance, the present research designed five interlacers that can be classified into round type and cornered type. These five int...

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Main Authors: Hua Qiu, Yu ye Fu, Mingqiao Ge
Format: Article
Language:English
Published: Sciendo 2014-06-01
Series:Autex Research Journal
Subjects:
Online Access:https://doi.org/10.2478/aut-2014-0004
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spelling doaj-d067898ef5bb4992bd0f761f874696f32021-09-06T19:41:27ZengSciendoAutex Research Journal2300-09292014-06-01142828810.2478/aut-2014-0004aut-2014-0004Effect of Geometry on Performance of InterlacerHua Qiu0Yu ye Fu1Mingqiao Ge2Key Laboratory of Eco-textiles, Ministry of Education, Jiangnan University, Jiangsu, ChinaKey Laboratory of Eco-textiles, Ministry of Education, Jiangnan University, Jiangsu, ChinaKey Laboratory of Eco-textiles, Ministry of Education, Jiangnan University, Jiangsu, ChinaInterlacer is the key part of interlacing technology that is adopted to improve the cohesion between loose multifilaments. Aimed at finding the interlacers with better performance, the present research designed five interlacers that can be classified into round type and cornered type. These five interlacers are different in cross-sectional shapes of yarn channel but are the same in the cross-sectional area. The evaluation of the performance of the interlacer includes the number and the strength of the tangles of the interlaced yarn it produces. Experiments are carried out at various supplied air pressures, yarn speeds and feed ratios. It was found that the interlacer with round cross-sectional shape of yarn channel is capable of producing an interlaced yarn with a large number of tangles and the cornered cross-sectional shape is effective in improving the strength of tangles. Among these five interlacers, the interlacer with an elliptical or an inverse-triangular shape has the best processing performancehttps://doi.org/10.2478/aut-2014-0004interlacerinterlaced yarnshape of yarn channelnumber of tanglesstrength of tangles
collection DOAJ
language English
format Article
sources DOAJ
author Hua Qiu
Yu ye Fu
Mingqiao Ge
spellingShingle Hua Qiu
Yu ye Fu
Mingqiao Ge
Effect of Geometry on Performance of Interlacer
Autex Research Journal
interlacer
interlaced yarn
shape of yarn channel
number of tangles
strength of tangles
author_facet Hua Qiu
Yu ye Fu
Mingqiao Ge
author_sort Hua Qiu
title Effect of Geometry on Performance of Interlacer
title_short Effect of Geometry on Performance of Interlacer
title_full Effect of Geometry on Performance of Interlacer
title_fullStr Effect of Geometry on Performance of Interlacer
title_full_unstemmed Effect of Geometry on Performance of Interlacer
title_sort effect of geometry on performance of interlacer
publisher Sciendo
series Autex Research Journal
issn 2300-0929
publishDate 2014-06-01
description Interlacer is the key part of interlacing technology that is adopted to improve the cohesion between loose multifilaments. Aimed at finding the interlacers with better performance, the present research designed five interlacers that can be classified into round type and cornered type. These five interlacers are different in cross-sectional shapes of yarn channel but are the same in the cross-sectional area. The evaluation of the performance of the interlacer includes the number and the strength of the tangles of the interlaced yarn it produces. Experiments are carried out at various supplied air pressures, yarn speeds and feed ratios. It was found that the interlacer with round cross-sectional shape of yarn channel is capable of producing an interlaced yarn with a large number of tangles and the cornered cross-sectional shape is effective in improving the strength of tangles. Among these five interlacers, the interlacer with an elliptical or an inverse-triangular shape has the best processing performance
topic interlacer
interlaced yarn
shape of yarn channel
number of tangles
strength of tangles
url https://doi.org/10.2478/aut-2014-0004
work_keys_str_mv AT huaqiu effectofgeometryonperformanceofinterlacer
AT yuyefu effectofgeometryonperformanceofinterlacer
AT mingqiaoge effectofgeometryonperformanceofinterlacer
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