Experimental and Analytical Investigation of Flexural Behavior of Carbon Nanotube Reinforced Textile Based Composites

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Abstract

In this study, the main goal of this study was to understand the effect of carbon nanotube (CNT) additives on the elastic behaviors of textile-based composites. The materials have three phases: carbon fiber fabric, epoxy matrix, and carbon nanotubes. Different weight fractions of CNTs were used (0% as a reference, 0.3%). Mechanical tests were performed, such as tension and three-point bending beam tests. In addition, the composite material damages were examined in detail. The experimental results show that the samples with CNT carried 9% and 23% more axial tensile force and bending capacity on average than those with NEAT. Besides, it was understood that adding 0.3% by weight of MWCNT increases the tensile modulus by approximately 9%. Finally, the mechanical tensile and bending tests are supported by analytical solutions successfully applied in the literature.

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Keywords

CNT, FRP, composite, carbon, CFRP, Bending Behavior, Vibration, Beams, Shells, Plates, Shear, 690, CNT; FRP; composite; carbon; CFRP, TA Engineering (General). Civil engineering (General), TJ Mechanical engineering and machinery, Article, CNT, carbon, composite, CFRP, FRP

Fields of Science

0205 materials engineering, 02 engineering and technology

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OpenCitations Citation Count
8

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Volume

16

Issue

6

Start Page

2222

End Page

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CrossRef : 4

Scopus : 20

PubMed : 1

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Mendeley Readers : 20

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14

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12

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4

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8

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