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Başlık: Static and dynamic mechanical properties of cotton/epoxy green composites
Yazarlar: Koyuncu, Menderes
Shaker, Khubab
Nawab, Yasir
Uludağ Üniversitesi/Teknik Bilimler Meslek Yüksekokulu.
0000-0003-0379-7492
Karahan, Mehmet
Karahan, Nevin
AAG-8536-2021
AAK-4298-2021
8649952500
22034801200
Anahtar kelimeler: Materials science
Natural fibres
Adhesion
Alkaline
Composites
Wettability
Glass transition temperature
Fiber treatment
Polymer composites
Tensile properties
Surface-treatments
Alkali treatment
Jute
Performance
Morphology
Sisal
Hemp
Cotton
Cotton fabrics
Dynamic mechanical analysis
Dynamics
Elastic moduli
Epoxy resins
Glass
Glass transition
Polymer matrix composites
Reinforcement
Scanning electron microscopy
Sodium hydroxide
Surface treatment
Temperature
Tensile strength
Alkaline treatment
Alkalines
Epoxy
Epoxy composite
Fabric composites
Glass transition temperature Tg
Green composites
Increasing temperatures
Reinforced epoxy
Static and dynamic mechanical properties
Yayın Tarihi: 2016
Yayıncı: Inst Chemical Fibres
Atıf: Koyuncu, M. vd. (2016). "Static and dynamic mechanical properties of cotton/epoxy green composites". Fibres and Textiles in Eastern Europe, 24(4), 105-111.
Özet: A study on the effect of alkaline treatment on the mechanical properties of cotton fabric reinforced epoxy composites is presented in this paper. One hour treatment of cotton fabric was performed using three different concentrations of sodium hydroxide (NaOH) solution. 1% NaOH treated fabric reinforced composites exhibited maximum improvement in tensile strength. It was concluded that the said NaOH concentration improves interfacial adhesion between the cotton fabric and epoxy resin. Moreover the morphology of the fracture surface, evaluated by scanning electron microscopy (SEM), indicated that surface treatment can yield better adhesion between the fabric and matrix, demonstrating the effectiveness of the treatment. The dynamic mechanical analysis (DMA) results revealed that alkali treated (1% and 3% NaOH) fabric composites exhibit higher storage moduli and glass transition temperature (Tg) values as compared to the untreated fabric composites. However, for all the composite specimens, the storage modulus decreased with increasing temperature (25 -100 degrees C). Tg values of 50.9, 56.7, 52.8 and 37.7 degrees C were recorded for the untreated and (1%, 3% and 5%) treated composites, respectively. The tan delta values decreased for all the composites with increasing temperature, indicating enhanced interactions between the polymer matrix and fabric reinforcement.
URI: https://doi.org/10.5604/12303666.1201139
https://www.infona.pl/resource/bwmeta1.element.baztech-d14f55a9-bc9f-4037-a36e-cac7b781e0ea
http://hdl.handle.net/11452/29611
ISSN: 2300-7354
1230-3666
Koleksiyonlarda Görünür:Scopus
Web of Science

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