JOURNAL ARTICLE

Fabrication and characterization of novel zirconia filled glass fiber reinforced polyester hybrid composites

Abstract

ABSTRACT Novel hybrid glass fiber reinforced polyester composites (GFRPCs) filled with 1‐5 wt % microsized zirconia (ZrO 2 ) particles, were fabricated by hand lay‐up process followed by compression molding and evaluated their physical, mechanical and thermal behaviors. The consumption of styrene in cured GFRPCs was confirmed by Fourier transform infrared spectroscopy. The potential implementation of ZrO 2 particles lessened the void contents marginally and substantially enhanced the mechanical and thermal properties in the resultant hybrid composites. The GFRPCs filled with 4 wt % ZrO 2 illustrated noteworthy improvement in tensile strength (66.672 MPa) and flexural strength (67.890 MPa) while with 5 wt % ZrO 2 showed 63.93% rise in hardness, respectively, as compared to unfilled GFRPCs. Physical nature of polyester matrix for composites and an improved glass transition temperature ( T g ) from 103 to 112 °C was perceived by differential scanning calorimetry thermograms. Thermogravimetric analysis revealed that the thermal stability of GFRPCs was remarkably augmented with the addition of ZrO 2 . © 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016 , 133 , 43615.

Keywords:
Materials science Composite material Differential scanning calorimetry Thermogravimetric analysis Glass transition Flexural strength Thermal stability Compression molding Polyester Ultimate tensile strength Glass fiber Cubic zirconia Composite number Fourier transform infrared spectroscopy Polymer Ceramic Chemical engineering

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52
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0.80
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