Low Velocity Impact and Tensile Performance of Gfrps Interleaved With Electrospun Nylon 6,6 Nanofiber Mats
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Date
2021
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
UNIV OSIJEK, TECH FAC
Open Access Color
GOLD
Green Open Access
Yes
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Publicly Funded
No
Abstract
Nanofibers can be interleaved into polymers and improvements in mechanical properties such as resistance to impact, delamination and debonding as well as enhanced ductility can be obtained. In this work, GFRP laminated composites were interleaved to non-woven nylon 6,6 nanofiber mats which were generated by the electrospinning method. Four kinds of configurations were considered; two pure configurations where GFRP had two and four glass fiber layers and the other two kinds of nanofiber modified configurations that had one and three nylon 6,6 nanofiber mats being interleaved in GFRP. Those specimens were then investigated for their impact resistance, energy absorption and tensile strength capabilities in regard to low-velocity impact and tensile tests. The results showed that adding nylon 6,6 nanofiber mats can increase energy absorption values of the modified specimens, but some decrease in load capacities could be observed.
Description
Keywords
Electrospinning, Gfrp, Low Velocity Impact, Nylon 6,6, Tensile Test, Mechanical Performance, Composite, Nanofiber mats, Composite Laminates, Nanofibers, Mechanical performance, Polyamides, Composite, Tensile strength, Nylon 6,6, GFRP, Low velocity impact, Strength capability, Tensile test, electrospinning, Rayon, Toughening, Tensile performance, Electrospinning, nylon 6,6, tensile test, Electrospinning method, Engineering (General). Civil engineering (General), Load capacity, Enhanced ductility, Energy absorption, low velocity impact, Electrospuns, TA1-2040, Tensile testing, Laminated composites
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
WoS Q
Q3
Scopus Q
Q3

OpenCitations Citation Count
N/A
Source
TEHNICKI VJESNIK-TECHNICAL GAZETTE
Volume
28
Issue
3
Start Page
733
End Page
738
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Scopus : 1
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Mendeley Readers : 4
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1
checked on Feb 03, 2026
Web of Science™ Citations
1
checked on Feb 03, 2026
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