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“Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”

Betel-nut leaf plate fiber (BLPF) is a lingo-cellulosic natural fiber that can be used to make eco-friendly and biodegradable blended or hybrid fabric with Banana fiber. In the world of organic textiles, naturally dyed BLPF-Banana fiber can be used for wearable products and satisfy health and hygien...

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Autores principales: Hassan, Mohammad Naim, Mondal, Moni Sankar, Hasan, Naimul, Reza, Md Masum, Rahman, Md Ishtiaque, Sarkar, Joy, Mohsin, Nourin, Hridoy, Rafat Mahmud, Jalal Uddin, Dr Ahmed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9970893/
https://www.ncbi.nlm.nih.gov/pubmed/36865476
http://dx.doi.org/10.1016/j.heliyon.2023.e13571
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author Hassan, Mohammad Naim
Mondal, Moni Sankar
Hasan, Naimul
Reza, Md Masum
Rahman, Md Ishtiaque
Sarkar, Joy
Mohsin, Nourin
Hridoy, Rafat Mahmud
Jalal Uddin, Dr Ahmed
author_facet Hassan, Mohammad Naim
Mondal, Moni Sankar
Hasan, Naimul
Reza, Md Masum
Rahman, Md Ishtiaque
Sarkar, Joy
Mohsin, Nourin
Hridoy, Rafat Mahmud
Jalal Uddin, Dr Ahmed
author_sort Hassan, Mohammad Naim
collection PubMed
description Betel-nut leaf plate fiber (BLPF) is a lingo-cellulosic natural fiber that can be used to make eco-friendly and biodegradable blended or hybrid fabric with Banana fiber. In the world of organic textiles, naturally dyed BLPF-Banana fiber can be used for wearable products and satisfy health and hygiene issues. BLPF and Banana fiber can be good natural fibers for hybrid fabrics despite being considered waste materials. In this research work, both of the fibers were pretreated carefully to get the desired fineness, color, flexibilities, etc., which are necessary to manufacture fabric. BLPF-Banana woven (1 × 1) hybrid fabric was developed where 12 Ne Banana yarns were used in the warp direction, and 20 Ne BLPF yarns were used in the weft direction and it was dyed naturally with Turmeric. Evaluations of different physico-mechanical properties; tensile strength (854.9 N), tearing strength (14.5 N), stiffness (3.1 N), crease recovery (75° angle), and fabric thickness (1.33 mm) of naturally dyed BLPF-Banana blended fabric were tested, and found satisfactory. SEM, FTIR, and Water vapor transmission tests were also conducted in this study. It attempted to turn the wastages into an asset to make a unique biodegradable BLPF-Banana hybrid fabric by blending two types of natural fibers with the help of natural dyeing substance; it could be a god replacement for synthetic blended fabric.
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spelling pubmed-99708932023-03-01 “Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric” Hassan, Mohammad Naim Mondal, Moni Sankar Hasan, Naimul Reza, Md Masum Rahman, Md Ishtiaque Sarkar, Joy Mohsin, Nourin Hridoy, Rafat Mahmud Jalal Uddin, Dr Ahmed Heliyon Research Article Betel-nut leaf plate fiber (BLPF) is a lingo-cellulosic natural fiber that can be used to make eco-friendly and biodegradable blended or hybrid fabric with Banana fiber. In the world of organic textiles, naturally dyed BLPF-Banana fiber can be used for wearable products and satisfy health and hygiene issues. BLPF and Banana fiber can be good natural fibers for hybrid fabrics despite being considered waste materials. In this research work, both of the fibers were pretreated carefully to get the desired fineness, color, flexibilities, etc., which are necessary to manufacture fabric. BLPF-Banana woven (1 × 1) hybrid fabric was developed where 12 Ne Banana yarns were used in the warp direction, and 20 Ne BLPF yarns were used in the weft direction and it was dyed naturally with Turmeric. Evaluations of different physico-mechanical properties; tensile strength (854.9 N), tearing strength (14.5 N), stiffness (3.1 N), crease recovery (75° angle), and fabric thickness (1.33 mm) of naturally dyed BLPF-Banana blended fabric were tested, and found satisfactory. SEM, FTIR, and Water vapor transmission tests were also conducted in this study. It attempted to turn the wastages into an asset to make a unique biodegradable BLPF-Banana hybrid fabric by blending two types of natural fibers with the help of natural dyeing substance; it could be a god replacement for synthetic blended fabric. Elsevier 2023-02-10 /pmc/articles/PMC9970893/ /pubmed/36865476 http://dx.doi.org/10.1016/j.heliyon.2023.e13571 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Hassan, Mohammad Naim
Mondal, Moni Sankar
Hasan, Naimul
Reza, Md Masum
Rahman, Md Ishtiaque
Sarkar, Joy
Mohsin, Nourin
Hridoy, Rafat Mahmud
Jalal Uddin, Dr Ahmed
“Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”
title “Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”
title_full “Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”
title_fullStr “Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”
title_full_unstemmed “Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”
title_short “Evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (BLPF) – Banana blended fabric”
title_sort “evaluation of physico-mechanical properties of naturally dyed betel-nut leaf plate (blpf) – banana blended fabric”
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9970893/
https://www.ncbi.nlm.nih.gov/pubmed/36865476
http://dx.doi.org/10.1016/j.heliyon.2023.e13571
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