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Seawater-immersed glass-polyester composites with optimized mechanical properties
Issam Touil1, Rania Saadeh2, Maha S Al Soudi3
1Mechanical Engineering Department, University of 20 Août 1955 Skikda, Center of Research in Mechanics, 25000, Constantine, Algeria.
Glass fiber reinforced composite materials (CMPG) degrade in seawater, losing strength with longer immersion. Higher fiber content improves resistance, but material selection and treatments are crucial for marine use.
Area of Science:
- Materials Science
- Marine Engineering
Background:
- Composites offer excellent properties for marine applications but degrade with seawater exposure.
- Understanding composite degradation is vital for their longevity in marine environments.
Purpose of the Study:
- To investigate the effect of seawater immersion on the mechanical properties of glass fiber reinforced unsaturated polyester composites (CMPG).
- To evaluate how fiber configuration, areal density, and immersion time influence composite performance.
- To develop a predictive model for CMPG mechanical properties under marine conditions.
Main Methods:
- Tensile testing (EN ISO 527) on CMPG samples with varying fiber layers (1- and 3-layer) and areal densities (300–600 g/m²).
- Seawater immersion for 3, 21, and 30 days.
- Fourier Transform Infrared (FTIR) spectroscopy and dimensional swelling analysis.
- Multiple regression modeling and Analysis of Variance (ANOVA) for data analysis.
Main Results:
- Mechanical properties like maximum stress and tensile modulus decreased with increased seawater immersion time.
- 3-layer composites showed superior tensile strength compared to 1-layer.
- Higher fiber density (600 g/m²) composites absorbed less water and exhibited less swelling.
- Seawater immersion significantly impacted tensile performance (p < 0.01), causing chemical degradation.
Conclusions:
- CMPG composites are susceptible to degradation in marine environments, with immersion time being a critical factor.
- Material design (layering, fiber density) influences seawater resistance.
- Careful material selection and protective surface treatments are essential for durable marine applications of CMPG.
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