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Enhanced mechanical properties of unidirectional basalt fiber/epoxy composites using silane-modified Na+-montmorillonite nanoclay

Khosravi, Hamed and Eslami-Farsani, Reza (2016) Enhanced mechanical properties of unidirectional basalt fiber/epoxy composites using silane-modified Na+-montmorillonite nanoclay. Polymer Testing, 55. pp. 135-142. ISSN 01429418

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Enhanced mechanical properties of unidirectional basalt fiber epoxy composites using silane-modified Na+-montmorillonite nanoclay.pdf - Accepted Version

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Abstract

This study explores the effects of 3-glycidoxypropyltrimethoxysilane (3-GPTS) modified Na-montmorillonite (Na-Mt) nanoclay addition on mechanical response of unidirectional basalt fiber (UD-BF)/epoxy composite laminates under tensile, flexural and compressive loadings. Fourier transform infrared (FT-IR), X-ray diffraction (XRD) and simultaneous thermal analysis (STA) data confirmed the reaction mechanism between the silane compound and Mt. It was demonstrated that addition of 5 wt.% 3-GPTS/Mt resulted in 28%, 11%, and 35% increase in flexural, tensile, and compressive strengths. Scanning electron microscopy (SEM) clarified the improvement in the adhesion between the basalt fibers and matrix in the case of Mt-enhanced epoxy specimen. Also, a theoretical route based on an Euler-Bernoulli beam-based approach was employed to estimate the compressive properties of the composites. The results demonstrated good agreement between theoretical and experimental approaches. Totally, the results of the study show that matrix modification is an effective strategy to improve the mechanical behavior of fibrous composites.

Item Type: Article
Uncontrolled Keywords: Multiscale composites, Basalt fiber, Nanoclay, Salinization, Mechanical response, Microstructure
Faculties: Materials Science and Engineering
Depositing User: Admin
Date Deposited: 14 Sep 2026 10:09
Last Modified: 14 Sep 2026 10:09
URI: https://repo.kntu.ac.ir/id/eprint/95

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