4.7 Article

Investigation of Dielectric, Mechanical, and Thermal Properties of Epoxy Composites Embedded with Quartz Fibers

期刊

POLYMERS
卷 15, 期 20, 页码 -

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MDPI
DOI: 10.3390/polym15204133

关键词

epoxy composites; dielectric properties; mechanical properties; radome material

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Polymer matrix wave transparent composites play an important role in high-speed communication, and can be used to make various antenna enclosures with good thermal and mechanical properties. By adding a small amount of quartz fibers, the dielectric performance, durability, and thermal and mechanical strength of the composite material can be significantly improved.
Polymer matrix wave transparent composites are used in a variety of high-speed communication applications. One of the applications of these involves making protective enclosures for antennas of microwave towers, air vehicles, weather radars, and underwater communication devices. Material performance, structural, thermal, and mechanical degradation are matters of concern as advanced wireless communication needs robust materials for radomes that can withstand mechanical and thermal stresses. These polymer composite radomes are installed externally on antennas and are exposed directly to ambient as well as severe conditions. In this research, epoxy resin was reinforced with a small amount of quartz fibers to yield an improved composite radome material compared to a pure epoxy composite with better thermal and mechanical properties. FTIR spectra, SEM morphology, dielectric constant (sigma r) and dielectric loss (delta), thermal degradation (weight loss), and mechanical properties were determined. Compared to pure epoxy, the lowest values of sigma r and delta were 3.26 and 0.021 with 30 wt.% quartz fibers in the composite, while 40% less weight loss was observed which shows its better thermal stability. The mechanical characteristics encompassing tensile and bending strength were improved by 42.8% and 48.3%. In high-speed communication applications, compared to a pure epoxy composite, adding only a small quantity of quartz fiber can improve the composite material's dielectric performance, durability, and thermal and mechanical strength.

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