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ISSN 2457-9459 (Online)
ISSN-L 0576-9787 (Print)


2023

Journal Citation Reports
Impact factor 2023: 1.3
5-Year Impact Factor: 1.2
Article Influence® Score: 0.140
Ranked 9 out of 23
MATERIALS SCIENCE, PAPER & WOOD (Q2)

Scopus
CiteScore 2023: 2.3
SNIP: 0.405

SCImago
SJR: 0.264
H-Index: 42
Ranked Q3

 

Title
Optimising mechanical properties of epoxy matrix hybrid composites through SiC filler integration and fiber reinforcement: the Taguchi approach
Authors
MURTHY ARUL, CHINNASAMY SUBRAMANIYAN, ERUSAGOUNDER SAKTHIVELMURUGAN and MYILSAMY SURESHKUMAR

Received March 24, 2024
Published Volume 58 Issue 5-6 May-June
Keywords epoxy hybrid composite, plain-woven carbon fabric, SiC filler, fiber orientation, mechanical properties, Taguchi L9 technique

Abstract
This research aimed to enhance the mechanical properties of epoxy hybrid composites by reinforcing the plain-woven carbon fabric with the addition of SiC filler. The effects of varying SiC filler weights (5, 10 and 15 wt%), SiC filler sizes (26, 54 and 72 µm), and fiber orientations (0°/90°, 30°/60°, and 45°/45°) in hybrid epoxy composites on their mechanical properties were explored. A hand layup method was employed to fabricate the epoxy hybrid composites. Then, the fabricated samples were subjected to mechanical testing as per the ASTM standards. The inclusion of SiC particles led to a significant improvement in the performance of the epoxy hybrid composites. Moreover, the orientations of the fibers played a pivotal role in shaping the composite characteristics. Furthermore, Taguchi’s L9 technique was used to identify the significant process parameters, resulting in a noteworthy 52% enhancement in efficiency compared to a full factorial design. Also, this study showed cost-effectiveness and resource efficiency by employing the Taguchi L9 technique over the full factorial design. Finally, the study concluded that significant parameters, including SiC particle size of 26 µm, fiber orientation of 0°/90°, and particle weight ranging from 10 to 15%, enhanced the mechanical performance of the composites.


Link https://doi.org/10.35812/CelluloseChemTechnol.2024.58.54

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