Open Access
Issue
EPJ Web Conf.
Volume 355, 2026
4th International Conference on Sustainable Technologies and Advances in Automation, Aerospace and Robotics (STAAAR 2025)
Article Number 02010
Number of page(s) 13
Section Additive Manufacturing and Sustainable Materials
DOI https://doi.org/10.1051/epjconf/202635502010
Published online 03 March 2026
  1. Khan, Fardin, et al. “Advances of composite materials in automobile applications–A review.” Journal of Engineering Research (2024). [Google Scholar]
  2. Hamzat, A.K., Murad, M.S., Adediran, I.A. et al. Fiber-reinforced composites for aerospace, energy, and marine applications: an insight into failure mechanisms under chemical, thermal, oxidative, and mechanical load conditions. Adv Compos Hybrid Mater 8, 152 (2025). https://doi.org/10.1007/s42114-024-01192-y [Google Scholar]
  3. Ammisetti, Dhanunjay Kumar, et al. “A review on reinforcements, fabrication methods, and mechanical and wear properties of titanium metal matrix composites.” Journal of Engineering and Applied Science 71.1 (2024): 60 [Google Scholar]
  4. Ramesh, Manickam, Rajeshkumar, Lakshmi Narasimhan, Srinivasan, Nagarajan, Kumar, Damodaran Vasanth and Balaji, Devarajan. “Influence of filler material on properties of fiber-reinforced polymer composites: A review” e-Polymers, vol. 22, no. 1, 2022, pp. 898-916. [Google Scholar]
  5. Gonzalez de Gortari, Mateo, Manjusri Misra, and Amar K. Mohanty. “Polyphthalamide polymers: A review on synthesis, properties, and advance manufacturing and emerging applications.” Journal of Applied Polymer Science 139.40 (2022): e52965. [Google Scholar]
  6. Mussatto, Andre, et al. “Advanced production routes for metal matrix composites.” Engineering reports 3.5 (2021): e12330. [Google Scholar]
  7. Mishra, Trilokinath, et al. “A state-of-the-art review on potential applications of natural fiber-reinforced polymer composite filled with inorganic nanoparticle.” Composites Part C: Open Access 9 (2022): 100298. [Google Scholar]
  8. Kumar, Amit, et al. “Recent developments in the mechanical properties and recycling of fiber‐reinforced polymer composites.” Polymer Composites 46.5 (2025): 3883-3908. [Google Scholar]
  9. A. Bhowmik, Kumar, R., Beemkumar, N., Kumar, A. V., Singh, G., Kulshreshta, A., ... & Santhosh, A. J. (2024). Casting of particle reinforced metal matrix composite by liquid state fabrication method: A review. Results in Engineering, 24, 103152. [Google Scholar]
  10. Yang, L., Z. Ou, and G. Jiang. “Research progress of elastomer materials and application of elastomers in drilling fluid. Polymers 15 (4), 918.” 2023, [Google Scholar]
  11. Mohanraj, C. M., et al. “Recent Progress in Fiber Reinforced Polymer Hybrid Composites and Its Challenges-A Comprehensive Review.” Journal of Natural Fibers 22.1 (2025): 2495911. [Google Scholar]
  12. Phiri, Resego, et al. “Advances in lightweight composite structures and manufacturing technologies: A comprehensive review.” Heliyon 10.21 (2024). [Google Scholar]
  13. N.G. Salini, B. G. Resmi, and Rosy Antony. “Biodegradable composites of waste expanded polystyrene with modified neem oil for packaging applications.” Journal of Elastomers & Plastics 53.8 (2021): 975-991. [Google Scholar]
  14. P. Sathyaseelan, Prabhukumar Sellamuthu, and Lakshmanan Palanimuthu. “Influence of stacking sequence on mechanical properties of areca-kenaf fiber-reinforced polymer hybrid composite.” J. Nat. Fibers 19 (2020): 369-381. [Google Scholar]
  15. S. Pavankalyan, and R. Christu Paul. “Kamalakannan. K. Experimental Investigation of Areca fiber Reinforced Polypropylene Polymer Composite for Automotive Components.” International Journal of Pure and Applied Mathematics 118.24 (2018): 1-12. [Google Scholar]
  16. A Gopanna, K.P., Rajan, Thomas S. P., & Chavali, M. (2019). Polyethylene and polypropylene matrix composites for biomedical applications. In Materials for biomedical engineering (pp. 175-216). Elsevier. [Google Scholar]
  17. Gopanna, Aravinthan, et al. “Investigation of mechanical, dynamic mechanical, rheological and morphological properties of blends based on polypropylene (PP) and cyclic olefin copolymer (COC).” European Polymer Journal 108 (2018): 439-451. [Google Scholar]
  18. T. Prabhu, Niranjana, et al. “Mechanical, thermal and flame-retardant properties of epoxy–nylon fabric–clay hybrid laminates.” High Performance Polymers 25.5 (2013): 559-565. [Google Scholar]
  19. Pokharel, Anamol, et al. “Biobased polymer composites: a review.” Journal of Composites Science 6.9 (2022): 255. [Google Scholar]
  20. Ebrahimi, Marzieh, Hossein Nazockdast, and Milad Mehranpour. “Morphology of PP/COC composites: effects of shear rate and organoclay partitioning.” arXiv preprint arXiv:1701.02077 (2017). [Google Scholar]
  21. Khan, Fardin, et al. “Advances of natural fiber composites in diverse engineering applications—A review.” Applications in Engineering Science 18 (2024): 100184. [Google Scholar]
  22. Mohammed, Mohammed, et al. “Challenges and advancement in water absorption of natural fiber-reinforced polymer composites.” Polymer Testing 124 (2023): 108083. [Google Scholar]
  23. Krishnan, Latha, et al. “Thermal stability, flammability and mechanical performances of unsaturated polyester–melamine resin blends and of glass fibre-reinforced composites based on them.” Polymers 14.22 (2022): 4885. [Google Scholar]
  24. Adekomaya, Oludaisi, and Thokozani Majozi. “Sustainable reclamation of synthetic materials as automotive parts replacement: effects of environmental response on natural fiber vulnerabilities.” Environmental Science and Pollution Research 31.12 (2024): 18396-18411. [Google Scholar]
  25. Abbas, Muntazir, and Mahmood Shafiee. “An overview of maintenance management strategies for corroded steel structures in extreme marine environments.” Marine Structures 71 (2020): 102718. [CrossRef] [Google Scholar]
  26. K. Sripriya., and M. Karthigha. “Influence of granite micro particles on the mechanical, damping and antimicrobial properties of silk–sisal hybrid composites.” Scientific Reports 14.1 (2024): 15995. [Google Scholar]
  27. M. Karthigha, et al. “Machine learning driven optimization of process parameters for dissimilar joints of Al6061 and A588K HSLA steel: an experimental approach.” Cluster Computing 29.1 (2026): 29. [Google Scholar]

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