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June 1, 2026Journal of Composite Materials0 citations

Experimental investigation of the effect of cotton flakes nanoparticles on the mechanical and electrical properties of epoxy/cotton flakes polymer composites

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RSR. SarkhoshRPR. ParsafarMNM. K. Nasrabadi

Key Points

  • This study aims to investigate how cotton flakes nanoparticles affect the mechanical and electrical properties of epoxy composites.
  • Samples with varying weight percentages of cotton flakes were fabricated.
  • Mechanical properties were assessed using tensile and three-point bending tests.
  • Dielectric constant measurements were conducted to determine electrical characteristics.
  • Maximum tensile strengths observed were 18 MPa for pure resin, 35 MPa for 13 %wt, and 30 MPa for 22 %wt cotton flakes samples.
  • Flexural strengths were 109 MPa for pure resin, 85 MPa for 13 %wt, and 67 MPa for 22 %wt cotton flakes.
  • Dielectric constants were measured at 2.95 for pure resin, 3.1 for 13 %wt, and 3.18 for 33 %wt cotton flakes.

Abstract

Cotton flakes nanoparticles serve as versatile fillers across a wide range of industries, including aerospace, construction, transportation, and composite molding. To enhance resin viscosity for bonding applications within the aerospace industry, this study investigates the impact of cotton flakes nanoparticles on the mechanical and electrical properties of epoxy/cotton flakes polymer nanocomposites. To optimize properties, samples with varying weight percentages were fabricated. Mechanical properties were assessed via tensile and three-point bending tests, while dielectric constant measurements determined electrical characteristics. A comparative analysis of mechanical and electrical properties was conducted between samples containing varying cotton flakes percentages and a pure epoxy resin control. Results indicated that the maximum tensile strength for pure resin, 13 %wt cotton flakes, and 22 %wt cotton flakes samples was 18, 35, and 30 MPa, respectively. The maximum flexural strengths of pure resin, 13 %wt cotton flakes, and 22 %wt cotton flakes were determined to be 109, 85, and 67 MPa, respectively. Similarly, the maximum dielectric constant for pure resin, 13 %wt cotton flakes, and 33 %wt cotton flakes was measured as 2.95, 3.1, and 3.18, respectively. Mechanical and electrical properties evaluation revealed that the incorporation of cotton flakes filler into the resin matrix did not adversely affect the mechanical and electrical properties of the resin but also improved the properties.

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Cite This Study

Sarkhosh et al. (2026) studied this question.

synapsesocial.com/papers/6a1d226d02fbce9130638349https://doi.org/10.1177/00219983261453463
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