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July 21, 2025Polymers58 citationsOpen Access

Effects of Moisture Absorption on the Mechanical and Fatigue Properties of Natural Fiber Composites: A Review

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APAna PavlovićLVLorenzo ValzaniaGMGiangiacomo Minak

Key Points

  • Moisture absorption can reduce tensile strength by up to 40% and elastic modulus by 20-30%, impacting mechanical properties.
  • Surface modifications like alkaline and silane treatments significantly reduce moisture-induced degradation but depend on processing conditions.
  • Hybridization strategies and optimized fiber orientations can improve fatigue resistance in humid environments.
  • Future research should focus on predictive models and advanced monitoring to enhance the reliability of natural fiber composites.

Abstract

This review critically examines the effects of moisture absorption on the mechanical and fatigue properties of natural fiber composites (NFCs), with a focus on tensile strength, elastic modulus, and long-term durability. Moisture uptake can cause reductions in tensile strength of up to 40% and in elastic modulus by 20-30% depending on fiber type, mass fraction (typically in the range of 30-60%), and surface treatments. The review highlights Ithat while surface modifications (e.g., alkaline and silane treatments) significantly mitigate moisture-induced degradation, their effectiveness is highly sensitive to the processing conditions. Additionally, hybridization strategies and optimized fiber orientations show promise in enhancing fatigue resistance under humid environments. Despite substantial progress, major challenges remain, including the lack of standardized testing protocols and the limited understanding of multiscale aging mechanisms. Future research directions include developing predictive models that couple moisture diffusion and mechanical deterioration, implementing advanced in situ monitoring of damage evolution, and exploring novel bio-based treatments. By addressing these gaps, NFCs can become more reliable and widely adopted as sustainable alternatives in structural applications.

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Cite This Study

Pavlović et al. (2025) studied this question.

synapsesocial.com/papers/689a0614e6551bb0af8cd4f4https://doi.org/10.3390/polym17141996
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