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Torokhov, Valerii G., Dilyus I. Chukov, Victor V. Tcherdyntsev, Galal Sherif, Mikhail Y. Zadorozhnyy, Andrey A. Stepashkin, Ilya I. Larin, and Elena V. Medvedeva. 2022. "Mechanical and Thermophysical Properties of Carbon Fiber-Reinforced Polyethersulfone" Polymers 14, no. 14: 2956. https://doi.org/10.3390/polym14142956

Torokhov, V.G.; Chukov, D.I.; Tcherdyntsev, V.V.; Sherif, G.; Zadorozhnyy, M.Y.; Stepashkin, A.A.; Larin, I.I.; Medvedeva, E.V. Mechanical and Thermophysical Properties of Carbon Fiber-Reinforced Polyethersulfone. Polymers 2022, 14, 2956. https://doi.org/10.3390/polym14142956

Editor’s Choice articles are based on recommendations by the scientific editors of MDPI journals from around the world. Editors select a small number of articles recently published in the journal that they believe will be particularly interesting to readers, or important in the respective research area. The aim is to provide a snapshot of some of the most exciting work published in the various research areas of the journal.

Abstract: In this study, the mechanical and thermophysical properties of carbon fiber-reinforced polyethersulfone are investigated. To enhance the interfacial interaction between carbon fibers and the polymer matrix, the surface modification of carbon fibers by thermal oxidation is conducted. By means of AFM and X-ray spectroscopy, it is determined that surface modification changes the morphology and chemical composition of carbon fibers. It is shown that surface modification dramatically increases the mechanical properties of the composites. Thus, flexural strength and the E-modulus of the composites reinforced with modified fibers reached approximately 962 MPa and 60 GPa, respectively, compared with approximately 600 MPa and 50 GPa for the composites reinforced with the initial ones. The heat deflection temperatures of the composites reinforced with the initial and modified fibers were measured. It is shown that composites reinforced with modified fibers lose their stability at temperatures of about 211 °C, which correlates with the glass transition temperature of the PES matrix. The thermal conductivity of the composites with different fiber content is investigated in two directions: in-plane and transverse to layers of carbon fibers. The obtained composites had a relatively high realization of the thermal conductive properties of carbon fibers, up to 55–60%. Keywords: composite materials; carbon fibers; polyethersulfone; surface modification; interfacial interaction; adhesion; structure; thermal conductivity; thermal expansion

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Torokhov, V.G.; Chukov, D.I.; Tcherdyntsev, V.V.; Sherif, G.; Zadorozhnyy, M.Y.; Stepashkin, A.A.; Larin, I.I.; Medvedeva, E.V. Mechanical and Thermophysical Properties of Carbon Fiber-Reinforced Polyethersulfone. Polymers 2022, 14, 2956. https://doi.org/10.3390/polym14142956

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Torokhov VG, Chukov DI, Tcherdyntsev VV, Sherif G, Zadorozhnyy MY, Stepashkin AA, Larin II, Medvedeva EV. Mechanical and Thermophysical Properties of Carbon Fiber-Reinforced Polyethersulfone. Polymers. 2022; 14(14):2956. https://doi.org/10.3390/polym14142956

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Torokhov VG, Chukov DI, Tcherdyntsev VV, Sherif G, Zadorozhnyy MY, Stepashkin AA, Larin II, Medvedeva EV. Mechanical and Thermophysical Properties of Carbon Fiber-Reinforced Polyethersulfone. Polymers. 2022; 14(14):2956. https://doi.org/10.3390/polym14142956

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Torokhov, Valerii G., Dilyus I. Chukov, Victor V. Tcherdyntsev, Galal Sherif, Mikhail Y. Zadorozhnyy, Andrey A. Stepashkin, Ilya I. Larin, and Elena V. Medvedeva. 2022. "Mechanical and Thermophysical Properties of Carbon Fiber-Reinforced Polyethersulfone" Polymers 14, no. 14: 2956. https://doi.org/10.3390/polym14142956

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