Effects of Extreme Low Temperatures on the Impact Behavior of Boron Nitride Nanofillers Added Carbon Fiber/Epoxy Composite Tubes
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Green Open Access
Yes
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Publicly Funded
No
Abstract
This study aims to investigate the low-velocity impact response of boron nitride nanoparticles (BNNPs) added carbon fiber reinforced pipes (CFRPs) at various temperature values. Carbon fiber/epoxy composite specimens with (+/- 55 degrees)(3) winding angles were manufactured with the filament winding method. Low-velocity impact tests were performed with a 15 J energy level at five different temperatures between -196 degrees C and 23 degrees C ranges to understand the cryogenic environment effect on BNNP added carbon fiber reinforced tubes and neat carbon fiber reinforced tubes. The force-displacement and contact force-time graphs were attained in consequence of low-velocity impact tests. The damage areas, their size and characteristics were scrutinized both visually and with the aid of a Microscope. The test results showed that when ambiance temperatures decreased, the damage areas considerably increased both filled with BNNP and without BNNP filament wound carbon fiber reinforced tubes.
Description
Keywords
Boron nitride, carbon fiber reinforced tubes, cryogenic temperature, low-velocity impact, Low-Velocity Impact, Mechanical-Properties, Burst Strength, Damage, Nanotube, Patterns, Epoxy
Fields of Science
0205 materials engineering, 0203 mechanical engineering, 02 engineering and technology
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OpenCitations Citation Count
20
Volume
56
Issue
30
Start Page
4635
End Page
4644
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CrossRef : 20
Scopus : 27
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Mendeley Readers : 12
SCOPUS™ Citations
25
checked on Jul 17, 2026
Web of Science™ Citations
24
checked on Jul 17, 2026
Page Views
3
checked on Jul 17, 2026
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