ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS
Recently, with increases rapidly of the need for new raw materials and products in the textile sector, the use of alternative fibers has gained importance. Specific characteristics of alternative fibers are thinness, length, strength, brightness, biodegradable and undulation (for hair origin fibres)...
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Format: | Article |
Language: | English |
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Editura Universităţii din Oradea
2019-05-01
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Series: | Annals of the University of Oradea: Fascicle of Textiles, Leatherwork |
Subjects: | |
Online Access: | http://textile.webhost.uoradea.ro/Annals/Vol%20XX%20nr.%202-2019/Textile/Art.%20no.%20385%20pag%2097-102.pdf |
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author | SUNTER EROGLU Nilsen YUCE, Ismail CANOGLU Suat |
author_facet | SUNTER EROGLU Nilsen YUCE, Ismail CANOGLU Suat |
author_sort | SUNTER EROGLU Nilsen |
collection | DOAJ |
description | Recently, with increases rapidly of the need for new raw materials and products in the textile sector, the use of alternative fibers has gained importance. Specific characteristics of alternative fibers are thinness, length, strength, brightness, biodegradable and undulation (for hair origin fibres). The increasing of researching in these characteristic material properties in the past several decades has increased the interest of alternative fibres. A lot of work has been done around the world on about alternative fibres. Alternative fibers can be used alone or mixed together with conventional fibers. In mixed fibers could be seen more efficiently properties such as viscoelastic behavior, processing, tensile strength and flexural. Hair origin fibres (polar bear and caribou) especially provides thermal insulator to keep warm. Herbal fibres (pineapple and banana) composed of composites because of their eco-friendly, easy availability and high reinforce, renewable and specific characteristic properties. With the recent developments in composite technology, alternative herbal fibres based composites are expected to be developed in global sustainability. For these reasons, alternative fibres could be used in a variety of areas. The aims of this review are to explain properties, production methods and applications of alternative fibers including pineapple, polar bear, banana and caribou fibers. With the development of the fiber industry, it is thought that the importance given to these fibers will increase. |
first_indexed | 2024-04-13T11:19:31Z |
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id | doaj.art-1aabbc7378de405882e41548ef7d1a4a |
institution | Directory Open Access Journal |
issn | 1843-813X 2457-4880 |
language | English |
last_indexed | 2024-04-13T11:19:31Z |
publishDate | 2019-05-01 |
publisher | Editura Universităţii din Oradea |
record_format | Article |
series | Annals of the University of Oradea: Fascicle of Textiles, Leatherwork |
spelling | doaj.art-1aabbc7378de405882e41548ef7d1a4a2022-12-22T02:48:52ZengEditura Universităţii din OradeaAnnals of the University of Oradea: Fascicle of Textiles, Leatherwork1843-813X2457-48802019-05-01XX297102ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERSSUNTER EROGLU Nilsen0YUCE, Ismail1CANOGLU Suat2Haliç University, Faculty of Fine Arts, Department of Textile and Fashion Design, Beyoglu Istanbul, TurkeyTrakya University, Edirne Technical Vocational High School, Textile, Clothing, Footwear and Leather Section, 22020, Edirne, TurkeyMarmara University, Faculty of Technology, Department of Textile Engineering, Goztepe, Istanbul, TurkeyRecently, with increases rapidly of the need for new raw materials and products in the textile sector, the use of alternative fibers has gained importance. Specific characteristics of alternative fibers are thinness, length, strength, brightness, biodegradable and undulation (for hair origin fibres). The increasing of researching in these characteristic material properties in the past several decades has increased the interest of alternative fibres. A lot of work has been done around the world on about alternative fibres. Alternative fibers can be used alone or mixed together with conventional fibers. In mixed fibers could be seen more efficiently properties such as viscoelastic behavior, processing, tensile strength and flexural. Hair origin fibres (polar bear and caribou) especially provides thermal insulator to keep warm. Herbal fibres (pineapple and banana) composed of composites because of their eco-friendly, easy availability and high reinforce, renewable and specific characteristic properties. With the recent developments in composite technology, alternative herbal fibres based composites are expected to be developed in global sustainability. For these reasons, alternative fibres could be used in a variety of areas. The aims of this review are to explain properties, production methods and applications of alternative fibers including pineapple, polar bear, banana and caribou fibers. With the development of the fiber industry, it is thought that the importance given to these fibers will increase.http://textile.webhost.uoradea.ro/Annals/Vol%20XX%20nr.%202-2019/Textile/Art.%20no.%20385%20pag%2097-102.pdfPineapple FibersPolar Bear FibersBanana FibersCaribou FibersAlternative Fibres |
spellingShingle | SUNTER EROGLU Nilsen YUCE, Ismail CANOGLU Suat ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS Annals of the University of Oradea: Fascicle of Textiles, Leatherwork Pineapple Fibers Polar Bear Fibers Banana Fibers Caribou Fibers Alternative Fibres |
title | ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS |
title_full | ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS |
title_fullStr | ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS |
title_full_unstemmed | ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS |
title_short | ALTERNATİVE FIBERS II: PINEAPPLE, POLAR BEAR, BANANA AND CARIBOU FIBERS |
title_sort | alternative fibers ii pineapple polar bear banana and caribou fibers |
topic | Pineapple Fibers Polar Bear Fibers Banana Fibers Caribou Fibers Alternative Fibres |
url | http://textile.webhost.uoradea.ro/Annals/Vol%20XX%20nr.%202-2019/Textile/Art.%20no.%20385%20pag%2097-102.pdf |
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