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Information × Registration Number 0210U001428, 0107U000038 , R & D reports Title Research and development of hybrid composite materials having an increased resistance to combined and high-velocity mechanical loadings due to polymer matrix reinforced with fiber structures and discrete fillers based on carbon-containing and ceramic materials popup.stage_title Head Vyshnyakov Leon Romanovich, Registration Date 12-02-2010 Organization Frantzevich Insitute for Materials Science Problems of the Ukranian National Academy of Sciences popup.description2 Hybrid polymer composite materials are studied and designed that use carbon, basalt and glass fibers and disperse fillers to increase the resistance to combined and pulse loadings. Basalt fibers when added to reinforcing carbon structures (20 %) were found to retain the composite characteristics, which can be useful for aeroelastic blades of wind engines, simultaneously making the articles cost effective. In laminate polymer fiber composites, including materials of gradient-type, an increase of the resistance to high-velocity impact loadings was observed enabling their use as belts for ceramics-polymer composites used as protective ones. The results of reserches can be used in wind power production components and also in making body protection means. Product Description popup.authors Барщевська Ганна Кирилівна Василенков Юрій Михайлович Вишневський Леонід Генріхович Вишнякова Катерина Леонівна Дядечко Олександр Георгійович Жаботинський Віктор Григорович Корабльов Сергій Федорович Кущевський Анатолій Єлисейович Лемешко Валерій Лаврентійович Мазна Олександра Вікторівна Мороз Валентина Павлівна Морозова Валентина Миколаївна Нешпор Олексій Вячеславович Олійник Галина Сергіївна Охріменко Володимир Васильович Переселенцева Людмила Миколаївна Сінайський Борис Миколайович Семібратова Людмила Іванівна Хохлова Наталя Миколаївна Яременко Ольга Павлівна popup.nrat_date 2020-04-02 Close
R & D report
Head: Vyshnyakov Leon Romanovich. Research and development of hybrid composite materials having an increased resistance to combined and high-velocity mechanical loadings due to polymer matrix reinforced with fiber structures and discrete fillers based on carbon-containing and ceramic materials. (popup.stage: ). Frantzevich Insitute for Materials Science Problems of the Ukranian National Academy of Sciences. № 0210U001428
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Updated: 2026-03-24