This research concerns the strength and robustness of sandwich composites from carbon and sisal fibers. These composites fulfill the need of the advanced manufacturing industry for strong materials as well as being robustly designed for comfort. Alkaline treatment was applied to sisal fibers to facilitate their bonding with the epoxy matrix. This improved the performance of this composite. The hybrid composites had superior mechanical properties compared with those from carbon fiber only. They were tested, and it was found that the maximum tensile strength was 193MPa and impact absorption was 5.45 J. Tribological tests showed that the sliding friction coefficient ranged from 0.525 to 0.71, which means that the surface is better where wear is lower. It was optimized and fine-tuned some key processing parameters using a Taguchi L8 orthogonal array. The four- to six-layer composites consisted of a 50%–60% epoxy matrix and a 6.5 mm-thick composition. Characterization methods, including differential scanning calorimetry, Fourier transform infrared spectroscopy, and scanning electron microscopy, supported the fibers to be dispersed well and bonded strongly in-between surfaces and formulated to be stable at high temperatures. These eco-friendly hybrid composites are highly strong and work well in the military, aerospace, and automotive environments.
Article navigation
27 April 2026
Research Article|
December 02 2025
Mechanical and tribological behavior of carbon-sisal fiber reinforced sandwich composites
Gurumurthy Ramaiah
;
Department of Textile Technology,
Federal Technical and Vocational Training Institute
, Addis Ababa, Ethiopia
Corresponding author Gurumurthy Ramaiah (voguru1@gmail.com)
Search for other works by this author on:
Tolera A. Negawo
;
Tolera A. Negawo
Department of Textile Technology,
Federal Technical and Vocational Training Institute
, Addis Ababa, Ethiopia
Search for other works by this author on:
Senay Yacob Baraki
;
Senay Yacob Baraki
Department of Textile Technology,
Federal Technical and Vocational Training Institute
, Addis Ababa, Ethiopia
Search for other works by this author on:
Robel Legese
;
Robel Legese
Department of Textile Technology,
Federal Technical and Vocational Training Institute
, Addis Ababa, Ethiopia
Search for other works by this author on:
Daniel Asfaw
;
Daniel Asfaw
Department of Textile Technology,
Federal Technical and Vocational Training Institute
, Addis Ababa, Ethiopia
Search for other works by this author on:
Hailu Esayas Mekango
Hailu Esayas Mekango
Department of Textile Technology,
Federal Technical and Vocational Training Institute
, Addis Ababa, Ethiopia
Search for other works by this author on:
Corresponding author Gurumurthy Ramaiah (voguru1@gmail.com)
Conflict of interest The authors declare that they have no conflict of interest.
Publisher: Emerald Publishing
Received:
May 09 2025
Accepted:
October 27 2025
Online ISSN: 2046-0155
Print ISSN: 2046-0147
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Emerging Materials Research (2026) 15 (1): 34–48.
Article history
Received:
May 09 2025
Accepted:
October 27 2025
Citation
Ramaiah G, Negawo TA, Baraki SY, Legese R, Asfaw D, Mekango HE (2026), "Mechanical and tribological behavior of carbon-sisal fiber reinforced sandwich composites". Emerging Materials Research, Vol. 15 No. 1 pp. 34–48, doi: https://doi.org/10.1680/jemmr.25.00071
Download citation file:
New and popular articles
Suggested Reading
Tensile strength of GFRP and hybrid composites under various environmental conditions
Aircraft Engineering and Aerospace Technology: An International Journal (October,2018)
Factors affecting flexural and impact strength of natural fiber reinforced polymer composites: a review
Green Materials (September,2024)
Sustainable epoxy composite applications of graphene produced via electrochemical exfoliation
Emerging Materials Research (June,2026)
Sisal fiber as sustainable reinforcement in composite applications: a comprehensive review
Green Materials (March,2026)
Analysis of wood fly ash as a sustainable alternative to cement replacement in concrete
Proceedings of the Institution of Civil Engineers - Engineering Sustainability (December,2024)
Related Chapters
Sustainability
Structural Design of Buildings: Fundamentals in Design, Management and Sustainability
Sustainability and Climate Change
Water Supply and Distribution Systems
Adopting Project Management Tools in Defence Projects: Strengthening Monitoring, Control and Governance
Advancing Project Management: Frameworks, Digital Transformation, Sustainability and Governance
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
