Effect of stacking sequence on banana-aramid hybrid laminate properties
Ramachandran Natarajan; Ramamoorthi Rangasamy; Manickaraj Karuppusamy
Abstract
Keywords
References
1 Thorat, Y. V., Chavan, S. S., Mohite, D. D., & Pawar, U. S. (2024). Development of eco-friendly bio-composites using banana fibers for enhanced tensile and flexural properties.
2 Alsenani, S. M. H., Nazeer, A., Khidhir, B. A., Al Raqqadi, S., & Al Mawaali, J. (2024). Tensile behavior of date and banana fiber-reinforced sustainable green hybrid composites.
3 Imran, A. I., Delly, J., Samhuddin, Manalu, J., Jonathan, J., Numberi, A., & Safanpo, A. (2023). A review of banana fiber: impact of treatment, filler materials, hybrid composite, and application.
4 Manickaraj, K., Ramamoorthi, R., Karuppasamy, R., Sakthivel, K. R., & Vijayaprakash, B. (2024). A review of natural biofiber-reinforced polymer matrix composites. In K. Muduli, S. K. Rout, S. Sarangi, S. M. N. Islam, & A. Mohamed (Eds.),
5 Tengsuthiwat, J., Raghunathan, V., Ayyappan, V., Techawinyutham, L., Srisuk, R., Yorseng, K., Rangappa, S. M., & Siengchin, S. (2024). Lignocellulose sustainable composites from agro-waste Asparagus bean stem fiber for polymer casting applications: effect of fiber treatment.
6 Raghunathan, V., Ayyappan, V., Dhilip, J. D. J., Sundarrajan, D., Rangappa, S. M., & Siengchin, S. (2024). Influence of alkali-treated and raw Zanthoxylum acanthopodium fibers on the mechanical, water resistance, and morphological behavior of polymeric composites for lightweight applications.
7 Raghunathan, V., Gnanasekaran, S., Ayyappan, V., Devanathan, L. S., Rangappa, S. M., & Sienghcin, S. (2024). Sustainable characterization of brake pads using raw/silane‐treated Mimosa pudica fibers for automobile applications.
8 Sumesh, K. R., & Kanthavel, K. (2022). Optimizing various parameters influencing mechanical properties of banana/coir natural fiber composites using grey relational analysis and artificial neural network models.
9 Sivanantham, G., Ayyappan, V., Loganathan, P., Mani, S. K., Vijaya, G. S., Raghunathan, V., Rangappa, S. M., & Siengchin, S. (2025). Sustainable hybrid composites from flax, vetiver, and Luffa cylindrica: acoustic and structural performance.
10 Raghunathan, V., Palani, K., Shinu, P., Dhilip, J. D. J., Yoganjaneyulu, G., & Ganesh, S. (2022). Influence of Parthenium hysterophorus and Impomea pes-caprae fibers stacking sequence on the performance characteristics of epoxy composites.
11 Ganesh, S., Gunda, Y., Mohan, S. R. J., Raghunathan, V., & Dhilip, J. D. J. (2022). Influence of stacking sequence on the mechanical and water absorption characteristics of areca sheath-palm leaf sheath fibers reinforced epoxy composites.
12 Swaroop, D. V., Raju, D. M., Yaswanth, C., & Jenarthanan, M. P. (2022). Analysis of mechanical properties of banana-jute hybrid fiber reinforced epoxy composite by varying stacking sequence.
13 Nguyen, T. A., & Nguyen, T. H. (2022). Study on mechanical properties of banana fiber-reinforced poly(lactic acid) composites.
14 Manickaraj, K., Thirumalaisamy, R., Palanisamy, S., Ayrilmis, N., Massoud, E. E. S., Palaniappan, M., & Sankar, S. L. (2025). Value-added utilization of agricultural wastes in biocomposite production: characteristics and applications.
15 Sampath, B., Naveenkumar, N., Sampathkumar, P., Silambarasan, P., Venkadesh, A., & Sakthivel, M. (2022). Experimental comparative study of banana fiber composite with glass fiber composite material using Taguchi method.
16 Karthick, L., Sivakumar, S., Sasikumar, A., Prabhu, A., Senthil Kumar, J., & Vadivukarasi, L. (2022). A comparison and analysis of mechanical properties of glass fiber and banana fiber composite.
17 Anbarasu, N. A., & Karuppusamy, M. (2025). A review of sustainable construction and waste management: brick manufacturing using agro-industrial wastes.
18 Gokul, S., Ramakrishnan, T., Manickaraj, K., Devadharshan, P., Mathew, M. K., & Prabhu, T. V. (2024). Analyzing challenges and prospects for sustainable development with green energy: a comprehensive review.
19 Banu, M., Madhavan, V. R. B., Manickam, D., & Devarajan, C. (2021). Experimental investigation on stacking sequence of Kevlar and natural fibres/epoxy polymer composites.
20 Manickaraj, K., Nithyanandhan, T., Sathish, K., Karuppasamy, R., & Sachuthananthan, B. (2024). An experimental investigation of volume fraction of natural Java jute and sponge gourd fiber reinforced polymer matrix composite. In
21 Murugan, K., Venkatesh, S., Thirumalai, R., & Nandhakumar, S. (2021). Fabrication and investigations of kenaf fiber and banana fiber reinforced composite material.
22 Manickaraj, K., Ramamoorthi, R., Karuppasamy, R., Kannan, S., & Vijayaprakash, B. (2024). Experimental investigation of steel and porous Al foam LM vehicle leaf spring by using mechanical and computer method. In K. Muduli, S. K. Rout, S. Sarangi, S. M. N. Islam, & A. Mohamed (Eds.),
23 Subramanya, R., Sathyanarayana, P., Kn, M., & Naik, S. (2022). The manufacture and characterisation of short banana fibre-reinforced polymer composites.
24 Karuppusamy, M., Kalidas, S., Palanisamy, S., Nataraj, K., Nandagopal, R. K., Natarajan, R., Samraj, A., Ayrilmis, N., Sahu, S. K., Giri, J., & Kanan, M. (2025). Real-time monitoring in polymer composites: internet of Things integration for enhanced performance and sustainability-A review.
25 Dinesh, S., Elanchezhian, C., Vijayaramnath, B., Sathiyanarayanan, K., & Adinarayanan, A. (2020). Experimental investigation of banana bract fiber and palm fiber reinforced with epoxy hybrid composites.
26 Muralikrishna, M. V. V., Surya Kumari, T. S. A., Gopi, R., & Loganathan, G. B. (2019). Development of mechanical properties in banana fiber composite.
27 Venkatasudhahar, M., Kishorekumar, P., & Raja, N. D. (2020). Influence of stacking sequence and fiber treatment on mechanical properties of carbon-jute-banana reinforced epoxy hybrid composites.
28 Margabandu, S., & Subramaniam, S. (2019). Experimental evaluation and numerical validation of bending and impact behaviours of hybrid composites with various stacking arrangements.
29 Sathish, K., Manickaraj, K., Krishna, S. A., Basha, K. M., & Pravin, R. (2024). Integrating sustainable materials in exoskeleton development: a review.
30 Bakri, M. K. B., Jayamani, E., & Hamdan, S. (2017). Processing and characterization of banana fiber/epoxy composites: effect of alkaline treatment.
31 Muktha, K., & Keerthi Gowda, B. S. (2019). Investigation of water absorption and fire resistance of untreated banana fibre reinforced polyester composites.
32 Vijayan, C. N., Ramasamy, K., Karuppusamy, M., & Sivanantham, G. (2025). Mechanical, tribological and corrosion behaviour of stir compocast Al 6063 composites: impact of cenosphere reinforcement.
33 Rajkumar, D. R., Karthik, S., & Santhy, K. (2022). Evaluation of mechanical and thermal properties of banana/aramid/E-glass powder hybrid composite plate. In A. K. Parwani, P. Ramkumar, K. Abhishek, & S. K. Yadav (Eds.),
34 Sudhan, K., Deepak, S., & Karthick, R. (2016). Sustainability analysis of Kevlar and banana fiber composite.
35 Krishnadas, G., Karuppasamy, R., Selvam, S., & Manickaraj, K. (2024). Evolving sandwich composites through structural modifications with polyurethane foam and glass fiber.
36 Manickaraj, K., Karthik, A., Palanisamy, S., Jayamani, M., Ali, S. K., Sankar, S. L., & Al-Farraj, S. A. (2025). Improving mechanical performance of hybrid polymer composites: incorporating banana stem leaf and jute fibers with tamarind shell powder.
37 Ramesh, M., Atreya, T. S. A., Aswin, U. S., Eashwar, H., & Deepa, C. (2014). Processing and mechanical property evaluation of banana fiber reinforced polymer composites.
38 Badrinath, R., & Senthilvelan, T. (2014). Comparative investigation on mechanical properties of banana and sisal reinforced polymer based composites.
39 Thangavel, N., Shanmugavel, N. K., Karuppusamy, M., & Thirumalaisamy, R. (2024). Friction and wear behavior of premixed reinforcement hybrid composite materials.
40 Ramakrishnan, T., Manickaraj, K., Prithiv, S. P., Aditya, S. L. L., Rajanarayanan, N., & Gopalsamy, S. (2024). Advancements in aluminum metal matrix composites: reinforcement, manufacturing, and applications.
41 Aruchamy, K., Karuppusamy, M., Krishnakumar, S., Palanisamy, S., Jayamani, M., Sureshkumar, K., Ali, S. K., & Al-Farraj, S. A. (2025). Enhancement of mechanical properties of hybrid polymer composites using Palmyra palm and coconut sheath fibers: the role of tamarind shell powder.
42 Subramanian, L. S., Palanisamy, S., Karuppusamy, M., Azeez, A., Kashif Ali, S., Kalathil, S., Abbas, M., Alfarraj, S. A., & Ali Alharbi, S. (2026). Eco-friendly hybrid epoxy composites reinforced with snake grass fiber and dual agro-waste fillers for enhanced mechanical and acoustic performance.
43 Karuppusamy, M., Thirumalaisamy, R., Palanisamy, S., Nagamalai, S., Massoud, E. E. S., & Ayrilmis, N. (2025). A review of machine learning applications in polymer composites: advancements, challenges, and future prospects.
44 Manickaraj, K., Aravind, S., Ramakrishnan, T., Sudha, N., Ramamoorthi, R., & Nithyanandhan, T. (2024). Advancing polymer composites through computational learning and artificial intelligence integration. In
45 Gurusamy, M., Thirumalaisamy, R., Karuppusamy, M., & Sivanantham, G. (2025). Pistachio shell biochar as a reinforcing filler in short Turkish hemp fiber composites: A path toward sustainable materials.
46 Gurusamy, M., Soundararajan, S., Karuppusamy, M., & Ramasamy, K. (2024). Exploring the mechanical impact of fine powder integration from ironwood sawdust and coco dust particles in epoxy composites.
47 Ravichandran, G., Ramasamy, K., Manickaraj, K., Kalidas, S., Jayamani, M., Mausam, K., Palanisamy, S., Ma, Q., & Al-Farraj, S. A. (2025). Effect of sal wood and babool sawdust fillers on the mechanical properties of snake grass fiber-reinforced polyester composites.
