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Information × Registration Number 0213U000271, 0111U002296 , R & D reports Title Structural steel surface modification in glow discharge for improving its wear resistance in melting plastic medium popup.stage_title Head Kaplun V. G., Registration Date 29-01-2013 Organization Khmelnytskiy National University popup.description2 The object of researches is wearproofness of details of machines that work in a pair with polymers and their fusions. The aim of researches is an increase of tribological properties of steels at a friction in a pair with polymers and at the thermal processing of gap-filling plastics with the use of method of nitriding in a smouldering digit in hydrogen-free environments A scientific novelty consists in establishment of conformities to law of wear of steels in a pair with polymers and in the environment of gap-filling plastic after their strengthening nitriding in a smouldering digit in hydrogen-free environments and optimization of technological parameters of process of nitriding. on the criterion of maximal wearproofness of steels surfaces of friction. The worked out technology is characterized by an ecological cleanness and economy and allows to decrease expenses in 10 times electric power and in 100 times of expense of gases and to promote wearproofness of steel wares in 1.7-2 times as compared to existent technology of strengthening of the stove nitriding a method in the environment of ammonia. The results of researches are inculcated on ВАТ of "Termoplastavtomat" and ПП "Zenith"(Khmelnytskyi). This technology can be used in other industries of industry, for example, in motor-car - and aircraft building, instrumental production, to woodworking industry and others like that. Product Description popup.authors Гончар Володимир Антонович Донченко Тетяна Віталіївна Каплун Віталій Григорович Матвіїшин Петро Володимимрович Машовець Наталія Сергіївна Паршенко Анатолій Васильович popup.nrat_date 2020-04-02 Close
R & D report
Head: Kaplun V. G.. Structural steel surface modification in glow discharge for improving its wear resistance in melting plastic medium. (popup.stage: ). Khmelnytskiy National University. № 0213U000271
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Updated: 2026-03-23