Development of hardening parameters of hard-tempered rolling steel by surface-plastic deformation
DOI:
https://doi.org/10.31498/2225-6733.33.2016.105179Keywords:
a contact, tensions, durability, surface-plastic deformation, braces of supporting rollsAbstract
A short analysis of the known methods of choice of technological hardening parameters of machine-parts by surface-plastic deformation has been made. There are some limitations in the methods offered by the authors and these methods are general in essence. Such parameters, as the force of pressing the tool and the feed have not been calculated. Most researchers solve the tasks of the fatigue strength increase, wear-resistance, machine parts surface quality. The developed methods are directed towards the improvement of superficial layers properties. Contact-fatigue damages of machine parts develop not only on the surface but under it as well. Some authors assert that surface-plastic deformation reduces the resistances of the contact fatigue. On the basis of the results analysis, theoretical researches of the strained state of contacting cylindrical parts and experimental researches of the samples, the main provisions of hardening by a hardened-steel ball rolling that is used for making braces of supporting rolls of the mills for rolling plates have been worked out. The relations for the calculation of technological hardening parameters are given. The developed technology of surface hardening of tempered high-carbon steel has been tested experimentally for the contact fatigue. The samples which were hardened by a hardened-steel ball rolling with the calculated pressing force were of higher durability as compared to the control samples without hardeningReferences
Список использованных источников (ГОСТ):
Папшев Д.Д. Упрочнение деталей обкаткой шариками / Д.Д. Папшев. – М. : Машиностроение, 1968. – 132 с.
Гребеник В.М. Повышение надежности металлургического оборудования / В.М. Гребеник, А.В. Гордиенко, В.К. Цапко. – М. : Металлургия, 1988. – 688 с.
Разработка процесса планетарно-поворотной обкатки / И.А. Михайловский, В.И. Куцепендик, Е.И. Гун, И.Г. Гун, В.В. Сальников // Металлургические процессы и оборудование. – 2014. – № 1 (35). – С. 39-45.
Киричек А.В. Технология и оборудование статико–импульсной обработки поверхностным пластическим деформированием / А.В. Киричек, Д.Л. Соловьёв, А.Г. Лазуткин. – М. : Машиностроение, 2004. – 288 с.
Саверин М.М. Контактная прочность материала в условиях одновременного действия нормальной и касательной нагрузок / М.М. Саверин. – М. : Машгиз, 1946. – 148 с.
Науковий твір. Програма розрахунку напруженого стану контакту двох циліндрів за наявності дотичних сил, напруги на площині контакту, зовні площині, на площині, під поверхнею, по осі OZ / А.В. Ширяєв, А.О. Фролов. – Свідоцтво № 21356 від 23.07.2007.
Ширяев А.В. Развитие контактно-усталостного выкрашивания при циклическом контакте тел / А.В. Ширяев // ХI Региональная научно-техническая конференция : тезисы докладов в 2 т. – Мариуполь : ПГТУ, 2004. – Т. 2. – С. 17.
Контактно-усталостная прочность опорных валков / Б.А. Морозов [и др.] // Напряжения, деформации и расчеты на прочность металлургических машин : Сб. науч. тр. ВНИИМЕТМАШ. – М. : ВНИИМЕТМАШ, 1988. – С. 30-42.
Ширяев А.В. Исследование касательной силы при качении в условиях упруго-пластического и пластического контакта / А.В. Ширяев, И.В. Головачёва // Захист металургійних машин від поломок : Зб. наук. пр. – Маріуполь. – 2010. – Вип. 14 – С. 32-35.
Дрозд М.С. Определение механических свойств металла без разрушения / М.С. Дрозд. – М. : Металлургия, 1965. – 72 с.
Кудрявцев И.В. Влияние кривизны поверхностей на глубину пластической деформации при упрочнении деталей поверхностным наклепом / И.В. Кудрявцев, Г.Е. Петушков // Вопросы прочности и долговечности машиностроительных материалов и деталей : Сб. науч. тр. ЦНИИТМАШ. – 1966. – № 61. – С. 111-116.
References:
Papshev D.D. Uprochnenie detalei obkatkoi sharikami [Hardening spinning balls]. Moscow, Mashinostroenie Publ., 1968. 132 p. (Rus.)
Grebenik V.M. Povyshenie nadezhnosti metallurgicheskogo oborudovaniia [Improving the reliability of metallurgical equipment]. Moscow, Metallurgiya Publ., 1988. 688 p. (Rus.)
Mikhaylovskiy I.A. Razrabotka protsessa planetarno-povorotnoi obkatki [Process development of a planetary-turning burnishing]. Metallurgicheskie protsessy i oborudovanie – Metallurgical processes and equipment, 2014, no. 1 (35), pp. 39-45. (Rus.)
Kirichek A.V., Solovyov D.L., Lazutkin A.G. Tekhnologiia i oborudovanie statiko–impul'snoi obrabotki poverkhnostnym plasticheskim deformirovaniem [Technology and equipment for static-pulse processing of surface plastic deformation]. Moscow, Mashinostroenie Publ., 2004. 288 p. (Rus.)
Saverin M.M. Kontaktnaia prochnost' materiala v usloviiakh odnovremennogo deistviia normal'noi i kasatel'noi nagruzok [Contact strength material under conditions of simultaneous action of normal and tangential loads]. Moscow, Mashgiz Publ., 1946. 148 p. (Rus.)
Shiryaev A.V., Frolov A.A. Naukovii tvіr «Programa rozrakhunku napruzhenogo stanu kontaktu dvokh tsilіndrіv za naiavnostі dotichnikh sil, naprugi na ploshchinі kontaktu, zovnі ploshchinі, na ploshchinі, pіd poverkhneiu, po osі OZ» [Scientific work «Program of calculation of the tense state of contact of two cylinders at presence of tangent forces, tension on the plane of contact, outwardly to the plane, on a plane, under a surface, on wasp OZ»]. Certificate about registration no. 21356, 2007. (Ukr.)
Shiryaev A.V. Razvitie kontaktno-ustalostnogo vykrashivaniia pri tsiklicheskom kontakte tel. Anotatsii dopovidei 11 Region. nauk.-prakt. konf. [Development of the pin-tireless painting at the cyclic contact of bodies. Abstracts of 11th. Region. Sci.-Pract. Conf.]. Mariupol, 2004, vol. 2, p. 17. (Rus.)
Morozov B.A. Kontaktno-ustalostnaia prochnost' opornykh valkov [Contact fatigue strength of rolls]. Napriazheniia, deformatsii i raschety na prochnost' metallurgicheskikh mashin: sb. nauch. trud. VNIIMETMASH – Stress, strain and strength calculations of metallurgical machines: collection of VNIIMETMASH scientific works, 1988, pp. 30-42. (Rus.)
Shiryaev A.V., Golovachjova I.V. Issledovanie kasatel'noi sily pri kachenii v usloviiakh uprugo–plasticheskogo i plasticheskogo kontakta [Research of tangent force at woobling in the conditions of resilient – plastic and plastic contact]. Zashchita metallurgicheskikh mashin ot polomok – Protection of metallurgical machinery from damage, 2010, no. 14, pp. 32-35. (Rus.)
Drozd M.S. Opredelenie mehanicheskih svoystv metalla bez razrusheniya [Determination of mechanical properties of metal non-destructive]. Moscow, Metallurgiya Publ. 72 p. (Rus.)
Kudryavtsev I.M. Vliianie krivizny poverkhnostei na glubinu plasticheskoi deformatsii pri uprochnenii detalei poverkhnostnym naklepom [Influence of curvature surfaces to a depth of plastic deformation when hardening details surface of work hardening]. Voprosy prochnosti i dolgovechnosti mashinostroitel'nykh materialov i detalei: Sb. nauch. tr. TsNIITMASh – Questions of strength and durability of engineering materials and components: collection of TSNIITMASH scientific works, 1966, no. 61, pp. 111-116. (Rus.)
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