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June 3, 20260 citations

Improved mechanical and tribological behaviour of peepal–okra–madar fiber hybrid composites reinforced with TiO

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KAKiruthiga AnbanandamSYShailendra Kumar YadavRPRajasekaran Ponnuswamy

Key Points

  • To investigate the mechanical and tribological properties of a hybrid composite reinforced with TiO2 and various natural fibers.
  • Hybrid composite samples were created using Peepal, Okra, and Madar fibers in different configurations.
  • Titanium Dioxide (TiO2) was added in varying weight percentages (2-8 wt.%) as a filler material for testing.
  • Mechanical properties like hardness, impact resistance, and tensile strength were evaluated through standardized tests.
  • The composite with 6 wt. % TiO2 exhibited the lowest wear rate, indicating enhanced wear resistance.
  • Filler-free composites showed better mechanical properties than those with hybrid configurations.
  • The inclusion of TiO2 significantly improved the overall mechanical and tribological behavior of the composites.

Abstract

Hybridization of natural fiber composite is on the rise to improve the performance of the materials by the synergistic effect of multiple fibres. The wear resistance of hybrid composite has greatly been enhanced by the addition of filler materials. This paper will look at the mechanical and wear properties of a special hybrid composite reinforced with 6 wt. percent of Peepal Fiber (PF), and different weight percentages of Okra Fiber (OF) and Madar Fiber (MF). The artificial specimens were evaluated with mechanical characterizations such as hardness, impact resistance, flexural strength, interlaminar shear strength, and tensile strength. As a filler material to improve the tribological performance, different weight percentages (2, 4, 6 and 8 wt. %) of Titanium Dioxide (TiO2) nano powder were added. The mechanical properties of the filler-free composite samples that were composed of 15 wt. % Okra and 15 wt. % Madar fibers were better compared to those of the other samples. Furthermore, out of all the configurations studied, the sample with 6 wt. % TiO2 filler showed the lowest wear rate, which is a significant increase in the wear resistance. This paper highlights the potential of TiO2 reinforced hybrid natural fiber composite in sophisticated structural and abrasive applications.

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Cite This Study

Anbanandam et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc5d7dee9eb8c0dce72edhttps://doi.org/10.1051/epjconf/202637001002/pdf
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