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March 3, 2026مجلة كلية الاسراء الجامعة للعلوم والهندسة.0 citations

Mechanical and Durability Properties of Cement Panels Reinforced with Hybrid and PVA Fibers

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SFShukran Hikmat FarajMKMohammed J. Kadhim

Key Points

  • The hybrid composition of 1% HF and 2% PVA fibers shows optimal mechanical and thermal properties in cement panels.
  • Hybrid fibers achieved a compressive strength of 46.89 MPa and flexural strength of 8.56 MPa, indicating significant enhancements.
  • Observational analysis of cement mixtures through scanning electron microscopy revealed effective crack-bridging mechanisms.
  • The findings support advanced uses of silica-fume cement panels, indicating better performance in structural applications.

Abstract

This study examines the synergistic effects of hybrid fibers (HF) and polyvinyl alcohol (PVA) fibers on the structural and thermal properties of silica-fume cement panels. Scanning electron microscopy (SEM) was employed to examine mortar mixtures with varying fiber content to assess their enhancement of microstructure. We conducted several experiments on compressive, flexural, and splitting tensile strength, in addition to water absorption and thermal conductivity. The results indicate that 1% HF exhibits superior mechanical qualities, with a compressive strength of 46.89 MPa, a flexural strength of 8.56 MPa, and a reduced thermal conductivity of 0.83 W/m•K. PVA fibers at 2% enhance compressive strength (43.4 MPa) and flexural performance, whilst 1% HF increases splitting tensile strength (5.45 MPa). SEM examination indicated that crack-bridging and matrix densification were effective. The results indicate that a hybrid composition of 1% HF and 2% PVA fibers represents the optimal combination of strength, durability, and thermal efficiency. This facilitates the utilisation of more sophisticated, high-performance cement panels.

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Cite This Study

Faraj et al. (2025) studied this question.

synapsesocial.com/papers/69a75cabc6e9836116a25ba1https://doi.org/10.70080/2790-7732.1078
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