Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]

The Silver Reed Model LK150 knitting machine is a home knitting machine which is extremely lightweight and compact, making it preferable by most home knitters. There are various knitwears with interesting patterns can be made using this model. In the field of garments manufacturing by using flatbed...

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Main Authors: Abu Talib, Ainil Huda, Misron, Siti Nuranis Syazana, Mohd Fu’ad, Nurul ‘Izzah, Zamri, Nurul Ariesha, Nasir, Eryna
Format: Article
Language:English
Published: Univeristi Teknologi MARA, Sabah 2020
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/35338/1/35338.pdf
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author Abu Talib, Ainil Huda
Misron, Siti Nuranis Syazana
Mohd Fu’ad, Nurul ‘Izzah
Zamri, Nurul Ariesha
Nasir, Eryna
author_facet Abu Talib, Ainil Huda
Misron, Siti Nuranis Syazana
Mohd Fu’ad, Nurul ‘Izzah
Zamri, Nurul Ariesha
Nasir, Eryna
author_sort Abu Talib, Ainil Huda
collection UITM
description The Silver Reed Model LK150 knitting machine is a home knitting machine which is extremely lightweight and compact, making it preferable by most home knitters. There are various knitwears with interesting patterns can be made using this model. In the field of garments manufacturing by using flatbed knitting machines, it is important to understand the physical properties of fabric so that their impact on dimensional changes can be predicted to produce the most suitable end use. The samples were produced by using a blended bamboo/cotton yarn, with a composition of 30% cotton and 70% bamboo. The main objectives of this study are to to evaluate the physical properties of single jersey fabric knitted on home knitting machine by using different stitch dials and to relate the physical properties with different stitch lengths. Then, all tests were conducted to compare the physical properties of samples between three different stitch dials and the effects of before and after washing. The physical properties measured in this research were stitch length, stitch density, weight, thickness, absorbency and shrinkage. The result indicated that the longer the stitch length, the higher the percentage of the water impact penetration. Meanwhile, there was a slight reduction on the density, thickness and fabric weight. In addition, the result after three times washing showed that the samples only had slight changes in density, thickness, weight and stitch length, but has significant changes on the water impact penetration.
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spelling oai:ir.uitm.edu.my:353382020-10-27T14:53:43Z https://ir.uitm.edu.my/id/eprint/35338/ Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.] borneoakademika Abu Talib, Ainil Huda Misron, Siti Nuranis Syazana Mohd Fu’ad, Nurul ‘Izzah Zamri, Nurul Ariesha Nasir, Eryna Clothing trade Art of dress. Theory. Aesthetics. Costume design The Silver Reed Model LK150 knitting machine is a home knitting machine which is extremely lightweight and compact, making it preferable by most home knitters. There are various knitwears with interesting patterns can be made using this model. In the field of garments manufacturing by using flatbed knitting machines, it is important to understand the physical properties of fabric so that their impact on dimensional changes can be predicted to produce the most suitable end use. The samples were produced by using a blended bamboo/cotton yarn, with a composition of 30% cotton and 70% bamboo. The main objectives of this study are to to evaluate the physical properties of single jersey fabric knitted on home knitting machine by using different stitch dials and to relate the physical properties with different stitch lengths. Then, all tests were conducted to compare the physical properties of samples between three different stitch dials and the effects of before and after washing. The physical properties measured in this research were stitch length, stitch density, weight, thickness, absorbency and shrinkage. The result indicated that the longer the stitch length, the higher the percentage of the water impact penetration. Meanwhile, there was a slight reduction on the density, thickness and fabric weight. In addition, the result after three times washing showed that the samples only had slight changes in density, thickness, weight and stitch length, but has significant changes on the water impact penetration. Univeristi Teknologi MARA, Sabah 2020-03 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/35338/1/35338.pdf Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]. (2020) Borneo Akademika <https://ir.uitm.edu.my/view/publication/Borneo_Akademika/>, 4 (1). pp. 13-24. ISSN 2462-1641 http://borneoakademika.sabah.uitm.edu.my/
spellingShingle Clothing trade
Art of dress. Theory. Aesthetics. Costume design
Abu Talib, Ainil Huda
Misron, Siti Nuranis Syazana
Mohd Fu’ad, Nurul ‘Izzah
Zamri, Nurul Ariesha
Nasir, Eryna
Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]
title Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]
title_full Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]
title_fullStr Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]
title_full_unstemmed Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]
title_short Physical properties of single jersey bamboo cotton fabric produced on home knitting machine / Ainil Huda Abu Talib… [et al.]
title_sort physical properties of single jersey bamboo cotton fabric produced on home knitting machine ainil huda abu talib et al
topic Clothing trade
Art of dress. Theory. Aesthetics. Costume design
url https://ir.uitm.edu.my/id/eprint/35338/1/35338.pdf
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