Enhancement of Mechanical, Thermal and Water Uptake Performance of Tpu/Jute Fiber Green Composites Via Chemical Treatments on Fiber Surface

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Date

2020

Journal Title

Journal ISSN

Volume Title

Publisher

Walter de Gruyter Gmbh

Open Access Color

GOLD

Green Open Access

No

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No
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Top 10%
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Top 10%
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Top 10%

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Abstract

Chopped jute fiber (JF) surfaces were modified using alkaline, silane and eco-grade epoxy resin. Surface characteristics of jute fibers were confirmed by FTIR and EDX analyses. JF filled polyurethane elastomer (TPU) composites were prepared via extrusion process. The effect of surface modifications of JF on mechanical, thermo-mechanical, melt-flow, water uptake and morphological properties of TPU-based eco-composites were investigated by tensile and hardness tests, dynamic mechanical analysis (DMA), melt flow index (MFI) test, water absorption measurements and scanning electron microscopy (SEM) techniques, respectively. Mechanical test results showed that silane and epoxy treated JF additions led to increase in tensile strength, modulus and hardness of TPU. Glass transition temperature (T-g) of TPU rose up to higher values after JF inclusions regardless of treatment type. Si-JF filled TPU exhibited the lowest water absorption among composites. Surface treated JFs displayed homogeneous dispersion into TPU and their surface were covered by TPU according to SEM micro-photographs.

Description

Akar, Alinda Oyku/0000-0003-1596-8439; Tayfun, Ümit/0000-0001-5978-5162

Keywords

polyurethane elastomer, jute fiber, surface treatment, eco-composites, melt mixing, TP1080-1185, jute fiber, melt mixing, eco-composites, polyurethane elastomer, surface treatment, Polymers and polymer manufacture

Turkish CoHE Thesis Center URL

Fields of Science

02 engineering and technology, 0210 nano-technology

Citation

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
36

Source

International Conference on Materials and Nanomaterials (MNs) -- JUL 17-19, 2019 -- Paris, FRANCE

Volume

20

Issue

1

Start Page

133

End Page

143

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CrossRef : 19

Scopus : 35

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Mendeley Readers : 52

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35

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Web of Science™ Citations

33

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2

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3.47267375

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