Impact Response of Nanoparticle Reinforced 3d Woven Spacer/Epoxy Composites at Cryogenic Temperatures

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Date

2021

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Journal ISSN

Volume Title

Publisher

SAGE PUBLICATIONS LTD

Open Access Color

Green Open Access

No

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Top 10%

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Abstract

Fiber-reinforced polymer composites serving in harsh conditions must maintain their performance during their entire service. The cryogenic impact is one of the most unpredictable loading types, leading to catastrophic failures of composite structures. This study aims to examine the low-velocity impact (LVI) performance of 3D woven spacer glass-epoxy composite experimentally under cryogenic temperatures. LVI tests were conducted under various temperatures ranging from room temperature (RT) to -196 degrees C. Experimental results reveal that the 3D composites gradually absorbed higher impact energies with decreasing temperature. Besides, the effect of multi-walled carbon nanotube and SiO2 nanofiller reinforcements of the matrix on the impact performance and the damage characteristics were further assessed. Nanofiller modification enhanced the impact resistance up to 30%, especially at RT. However, the nanofiller efficiency declined with decreasing temperature. The apparent damages were visually examined by scanning electron microscopy to address the damage formation. Significant outcomes have been achieved with the nanofiller modification regarding the new usage areas of 3D woven composites.

Description

Keywords

Low-Velocity Impact, 3d Woven Spacer Composite, Cryogenic Temperature, Nano Modification, Low-Velocity Impact, Walled Carbon Nanotubes, Mechanical-Properties, Fabric/Epoxy Composites, Sandwich Composites, Failure-Mechanism, Shear-Strength, Behavior, Damage, Room, Low-Velocity İmpact, Cryogenic Temperature, Nano Modification, 3D Woven Spacer Composite

Turkish CoHE Thesis Center URL

Fields of Science

0205 materials engineering, 0203 mechanical engineering, 02 engineering and technology

Citation

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
3

Source

JOURNAL OF COMPOSITE MATERIALS

Volume

55

Issue

28

Start Page

4231

End Page

4244
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Citations

CrossRef : 4

Scopus : 5

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Mendeley Readers : 6

SCOPUS™ Citations

5

checked on Feb 03, 2026

Web of Science™ Citations

4

checked on Feb 03, 2026

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