Effects of Extreme Low Temperatures on the Impact Behavior of Boron Nitride Nanofillers Added Carbon Fiber/Epoxy Composite Tubes

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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.

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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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20

Volume

56

Issue

30

Start Page

4635

End Page

4644
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Scopus : 27

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25

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24

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3

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