МОДИФІКАТОРИ НА ОСНОВІ УЛЬТРА- І НАНОДИСПЕРСНИХ ПОРОШКОВИХ МАТЕРІАЛІВ ДЛЯ СПЛАВІВ НА ОСНОВІ ЗАЛІЗА

Автор(и)

  • А. М. Верховлюк Физико-технологический институт металлов и сплавов НАН Украины, Киев
  • Р. А. Сергиенко Физико-технологический институт металлов и сплавов НАН Украины, Киев
  • А. А. Щерецкий Физико-технологический институт металлов и сплавов НАН Украины, Киев
  • М. И. Науменко Физико-технологический институт металлов и сплавов НАН Украины, Киев
  • М. В. Афанасиев Физико-технологический институт металлов и сплавов НАН Украины, Киев

Ключові слова:

залізовуглецеві сплави, розплав, модифікування, нанопорошки, нанодисперсні частки

Анотація

У даній статті представлено літературний огляд щодо впливу ультра- і нанодисперсних модифікаторів різного хімічного складу на структуру і властивості залізовуглецевих сплавів. На основі аналізу літератури показано, що модифікування сплавів ультра- і нанодисперсними порошками дозволяє одержувати виливки з покращеними механічними властивостями за
рахунок подрібнення структурних складових.

Біографії авторів

А. М. Верховлюк, Физико-технологический институт металлов и сплавов НАН Украины, Киев

д-р техн. наук, зам. директора по научн. работе

Р. А. Сергиенко, Физико-технологический институт металлов и сплавов НАН Украины, Киев

канд. техн. наук, ст. науч. сотр.

А. А. Щерецкий, Физико-технологический институт металлов и сплавов НАН Украины, Киев

д-р техн. наук, ведущ. науч. сотр.

М. И. Науменко, Физико-технологический институт металлов и сплавов НАН Украины, Киев

гл. технолог

М. В. Афанасиев, Физико-технологический институт металлов и сплавов НАН Украины, Киев

мл. науч. сотр.

Посилання

Reshetnikova, S. (2008) Primenenie nanoporoshkov himicheskih soedineniy dlya povyisheniya fiziko-mehanicheskih harakteristik izdeliy mashinostroeniya [Application of nanopowders of chemical compounds to improve the physico-mechanical characteristics of engineering products]. Candidate’s thesis. Krasnoyarsk [in Russian].

Glezer, A. (2002) Amorfnyie i nanokristallicheskie struktury: shodstva, razlichiya, vzaimnyie perehody [Amorphous and nanocrystalline structures: similarities, differences, mutual transitions]. Zh. Ros. him. ob-va im. D. I. Mendeleeva, vol. XLVI, no. 5, pp. 57–63 [in Russian].

Predtechenskiy, M., Cherepanov, A. (2010) Plazmohimicheskiy sintez nanoporoshkov tugoplavkih soedineniy i ih primenenie dlya modifitsirovaniya konstruktsionnyih staley i splavov [Plasmachemical synthesis of nanopowders of refractory compounds and their application for modifying structural steels and alloys]. Liteyschik Rossii, no. 3, pp. 28–29 [in Russian].

Cherepanov, A., Drozdov, V., Manolov, V., Poluboyarov, V. (2012) Vliyanie nanoporoshkov tugoplavkih soedineniy na svoystva serogo chuguna [Influence of nanopowders of refractory compounds on the properties of gray cast iron]. Tyazheloe mashinostroenie no. 8.pp. 8–11 [in Russian].

Aftandilyants, E., Lopatko, K. (2016) Proizvodstvo i primenenie metallicheskih nanochastits [ Production and application of metallic nanoparticles]. Materialy XIV Vseukrayinskoy naukovopraktichnoy konferentsiy "Spetsialna metalurgiya: vchora, sogodni, zavtra”. Materials XIV of the All-Ukrainian Scientific and Practical Conference “Special Metallurgy: Yesterday, Today, Tomorrow”, pp. 36–56 [in Russian].

Kalinina, A. (1999) Strukturoobrazovanie pri ohlazhdenii zhidkih metallov, soderzhaschih ultradispersnyie chastitsy [Structure formation upon cooling of liquid metals containing ultrafine particles]. Candidate’s thesis. Novosibirsk: ITPM SO RAN [in Russian].

Kalinina, A., Cherepanov, A., Popov, V., Poluboyarov, V., Plaksin, S. (1999) Vliyanie ultradispersnyih tugoplavkih soedineniy na strukturu zatverdevayuschego splava [Influence of ultradisperse refractory compounds on the structure of a solidifying alloy]. Preprint no. 5–99. Novosibirsk: ITPM SO RAN [in Russian].

Kalinin, V., Hryichikov, V., Krivosheev, V. (2004) O kriterialnoy otsenke effektivnosti odifikatorov pri obrabotke chugunov [About a criterial estimation of efficiency of modifiers at processing of pig-iron]. Teoriya i praktika metallurgii, no. 2, pp. 25–29 [in Russian].

Kalinin, V., Hryichikov, V., Krivosheev, V., Menyaylo, E. (2010) Teoriya i praktika odifitsirovaniya chuguna ultra- i nanodispersnymi materialami [Theory and practice of modifying cast iron with ultra- and nanodispersed materials]. Metallurgicheskaya i gornorudnaya promyishlennost, no. 5, pp. 41–45 [in Russian].

Kalinin, V. (2005) Naukovi osnovi progresivnih tehnologiy modifikuvannya ta leguvannya chavuniv dlya vilivkiv metalurgiynogo obladnannya [Scientific fundamentals of advanced technologies for the modification and alloying of pig iron for casting of metallurgical equipment]. Extended abstract of Doctor’s thesis. Natsionalna metalurgiyna akademiya Ukrayini. Dnipropetrovsk [in Russian].

Kalinin, V., Hryichikov, V., Krivosheev, V. (2004) Prakticheskie aspekty primeneniya ultradispersnyih modifikatorov dlya chugunnyih otlivok [Practical aspects of the use of ultradisperse modifiers for cast iron castings]. Metall i lite Ukrainy, no. 4, p. 4–6 [in Russian].

Kalinin, V., Kondrat, A. (2009) Rol tugoplavkih nanochastits v modifitsiruyuschih protsessah pri kristallizatsii chugunnyih otlivok [The role of refractory nanoparticles in modifying processes during the crystallization of cast iron castings]. Metaloznavstvo ta termichna obrobka metaliv,

no.1, pp. 14–21 [in Russian].

Saburov, V.(1984) Vybor modifikatorov i praktika modifitsirovaniya liteynyh splavov [The choice of modifiers and the practice of modifying casting alloys]. Omsk: OmPI, 98 p. [in Russian].

Pat. 2494152 Rossiya. Sposob nauglerozhivaniya chuguna s ispolzovaniem nanostrukturirovannogo nauglerozhivatelya [Method for Carbonization of Cast Iron Using a Nanostructured Carburizing Agent]: MPK C21C 1/08 (2006.01), C21C 5/52 (2006.01), B82B 3/00 (2006.01). Panfilov E. V., Abramov V. I., Gumerov I. F., Gurtovoy D. A., Abdulhalikov R. R., Korolev S. P.; patentoobladatel Otkryitoe aktsionernoe obschestvo «KAMAZ». – № 2011141402/02; zayavl. 12.10.2011; opubl. 27.09.2013 Byul. № 27.

Rabinovich, V., Havin, Z. (1991) Kratkiy himicheskiy spravochnik [Brief Chemical Handbook]. A. Potehina, A. Efimova (Ed). L.: Himiya, 432 p. [in Russian].

Kotelnikov, R. (1989) Osobo tugoplavkie elementyi i soedineniya: sprav [Especially refractory elements and connections: reference]. M.: Metallurgiya, 410 p. [in Russian].

Samsonov, G. , Borisova, A. , Zhidkova, T. et al. (1978) Fiziko-himicheskie svoystva okislov: spravochnik [Physicochemical Properties of Oxides: A Handbook]. G. V. Samsonova (Ed). Moscow: Metallurgiya, 472 p. [in Russian].

Alekseev, A., Bovkun, G. , Bolgar, A. et al. (1986) Svoystva, poluchenie i primenenie tugoplavkih soedineniy: sprav. [Properties, production and application of refractory compounds: Ref.]. T. Ya. Kosolapovoy (Ed). Moscow: Metallurgiya, 928 p. [in Russian].

Arzamasov, B., Sidorin, I., Kosolapov, G. (1986) Materialovedenie: Uchebnik dlya vyisshih tehnicheskih uchebnyih zavedeniy [Material Science: A Textbook for Higher Technical Institutions]. B. N. Arzamasova (Ed). Moscow: Mashinostroenie, 384 p. [in Russian].

Lahtin, Yu. (1990) Metallovedenie: uchebnik dlya vyisshih uchebnyih tehnicheskih uchebnyih zavedeniy [Metal Science: A Textbook for Higher Educational Technical Technical Institutions]. Mashinostroenie, 528 p. [in Russian].

Sidorov, E. (2011) Fiziko-himicheskie osnovyi liteynogo proizvodstva. Protsessyi kristallizatsii i strukturoobrazovaniya: uchebnoe posobie [Physico-chemical foundations of foundry production. Processes of crystallization and structure formation: a textbook]. Vladimir: Izd-vo Vladim. gos. un-ta, 230 p. [in Russian].

Marukovich, E., Stetsenko, V., Solovey, A. (2001) Rol alyuminiya, kremniya i ih oksidov v protsesse grafitiziruyuschego modifitsirovaniya chugunov [The role of aluminum, silicon and their oxides in the process of graphitizing modification of cast irons. Casting and metallurgy]. Lite i metallurgiya, no. 2, pp. 96–97 [in Russian].

Zyikova, A. (2015) Vliyanie ultradispersnoy smesi, TiO2, ZrO2 i kriolita na strukturoobrazovanie i fiziko-mehanicheskie svoystva konstruktsionnyih chugunov [Influence of the ultradispersed mixture, TiO2, ZrO2 and cryolite on the structure formation and physicomechanical properties of structural cast irons]. Extended abstract of candidate’s thesis. Barnaul, 20 p. [in Russian].

Eremin, E., Minnehanov, G., Filippov, Yu., Minnehanov, R., Trenihin, M. (2010) Issledovanie svoystv poroshka karbonitrida titana, poluchennogo plazmohimicheskim sintezom [Investigation of the properties of titanium carbonitride powder obtained by plasma-chemical synthesis]. Omskiy nauchnyiy vestnik, Vol. 87, no. 1, pp. 27–31 [in Russian].

Boguslaev, A., Klochihin, V., Lyisenko, N., Naumik, V. (2011) Ispolzovanie nanotehnologiy v liteynom proizvodstve [Use of nanotechnology in foundry]. Visnik Donbaskoy derzhavnoyi mashinobudivnoyi akademiyi, no. 4 (25), pp. 23–28 [in Russian].

Pat. 2443794 Rossiya. Modifikator dlya staley s splavov [Modifier for steels with alloys]: MPK C22C 35/00 (2006.01). Minnehanov G. N., Eremin E. N., Minnehanov R. G.; patentoobladatel Minnehanov R. G., Gosudarstvennoe obrazovatelnoe uchrezhdenie vyisshego professionalnogo obrazovaniya «Omskiy gosudarstvennyiy tehnicheskiy universitet». – № 2010104237/02; zayavl. 08.02.2010, Byul. № 23; opubl. 27.02.2012, Byul. № 6.

Kalinichenko, A., Slutskiy, A., Sheynert, V., Zyik, N., Borodulya, V., Rabinovich, O. (2015) Perspektivyi ispolzovaniya nanorazmernyh poroshkov dlya polucheniya modifitsiruyuschih ligatur P[rospects for the use of nano-sized powders for obtaining modifying ligatures]. Lite i metallurgiya, no. 1 (78), pp. 65–73 [in Russian].

Minnehanov, G., Shuykin, O., Minnehanov, R. (2009) Vliyanie modifitsirovaniya nanochastitsami karbonitrida titana i legirovaniya titanom na strukturu i svoystva doevtekticheskih chugunov [Effect of modification of titanium carbonitride nanoparticles and titanium doping on the structure and properties of pre-eutectic cast irons]. Omskiy nauchnyiy vestnik, Vol. 77, no. 1, pp. 22–25 [in Russian].

Davyidov, S. (2006) Nanomodifikator kak instrument gennoy inzhenerii strukturnogo sostoyaniya rasplava chuguna. Modifitsirovanie kak effektivnyiy metod povysheniya kachestva chugunov i staley: [Nanomodifier as an instrument of genetic engineering of the structural state of cast iron melt. Modification as an effective method of improving the quality of cast iron and steel]. Sbornik dokladov Liteynogo konsiliuma no. 1. Chelyabinsk: Chelyabinskiy Dom pechati, 12 p [in Russian].

Uskenbaeva, A., Shamelhanova, N. (2016) Otsenka modifitsiruyuschey sposobnosti nanostrukturnyh dobavok k chugunu [Estimation of the modifying ability of nanostructured additives to cast iron]. Vestnik KazNITU, no. 2, pp. 184–190 [in Russian].

Uskenbaeva, A., Shamelhanova, N. (2016) K primeneniyu fullerenovoy cherni v kachestve nanomodifikatora chugunov [To the use of fullerene black as a nanomodifier of cast irons]. Vestnik KazNU imeni AL’-Farabi, no. 1, pp. 106–113 [in Russian].

Kuznetsov, M., Kolmogorov, D., Zernin, E. (2012) Upravlenie strukturoy i svoystvami metallov metodom modifitsirovaniya [Control of the structure and properties of metals by the method of modification]. Tehnologiya mashinostroeniya, no. 2, pp. 5–8 [in Russian].

Eletskiy, A., Smirnov, B. (1991) Klaster C60 – novaya forma ugleroda [Cluster C60 – a new form of carbon]. Uspehi fizicheskih nauk. Vol. 161. no 7. pp. 173–192 [in Russian].

Eletskiy, A., Smirnov, B. (1995) Fullerenyi i strukturyi ugleroda [Fullerenes and carbon structures]. Uspehi fizicheskih nauk, Vol. 165, no. 9, pp. 977–1009 [in Russian].

Pat. 2080961 Rossiya. Sposob polucheniya iznosostoykih otlivok iz chuguna [Method for obtaining wear-resistant castings from cast iron]: MPK B22D27/20, C21C1/08, B22D1/00. Krushenko G. G., Pinkin V. F., Troshkin B. I., Osinenko S. A.; patentoobladatel: Respublikanskiy inzhenerno-tehnicheskiy tsentr po vosstanovleniyu i uprochneniyu detaley mashin i mehanizmov SO RAN. – № 94012068/02; zayavl. 07.04.1994, opubl. 10.06.1997.

Komarov, O., Volosatikov, V., Provorova, I., Komarova, T., Baranovskiy, K. (2014) Nanorazmernyie i ultradispersnyie chastitsyi v liteynyih tehnologiyah [Nanosize and ultrafine particles in foundry technologies]. Lite i metallurgiya, no. 2 (75), pp. 42–46 [in Russian].

Patent Ukrayiny na vynahid 17647 A. Modifikator dlya obrobky chavunu [Modifier for cast iron processing]: MPK (2006) C22C 35/00. Lagoda G. I., Rozbeyko V. P., Kalinin V. T., Filipchik A. M.; vlasnik patentu: virobnicho-komertsIyna fIrma tovaristvo z obmezhenoyu vIdpovIdalnIstyu «Status». – № 97010308; zayavl. 27.01.1997; opubl. 06.05.1997.

Kalinichenko, A., Slutskiy, A., Sheynert, V. (2015) Ispolzovanie modifitsiruyuschey ligatury, soderzhaschey nanodispersnye poroshki aktivnyh elementov pri poluchenii vysokoprochnogo chuguna s sharovidnym grafitom [Use of a modifying master alloy containing nanodispersed powders of active elements in the production of high-strength cast iron with nodular graphite]. Lite i metallurgiya, no. 3 (80), pp. 101–106 [in Russian].

Titov, V., Trotsan, A., Arnautov, A. (2009) Vliyanie ultradispersnyih modifikatorov na ekspluatatsionnyie svoystva chugunnyh izlozhnits. [Influence of ultradisperse modifiers on the operational properties of cast iron molds]. Visnik Priazovskogo derzhavnogo tehnichnogo universitetu, no. 19, pp. 87–90 [in Russian].

Rudnitskiy, F., Kulikov, S. (2017) Modifitsirovanie chugunov ultradispersnymi dobavkami. [Modification of cast irons by ultradisperse admixtures]. Lite i metallurgiya, no.1(86), pp. 11–15 [in Russian].

Kondrat’ev, V., Balanovskii, A., Ivanov, N., Ershov, V., Kornyakov, M.(2014) Evaluation of the effect of modifier composition with nanostructured additives on grey cast iron properties. Metallurgist, Vol. 58 (№ 5– 6), pp. 377–387 [in English].

Zyikova, A., Lyichagin, D., Chumaevskiy, A., Kurzina, I., Novomeyskiy, M. (2014) Vliyanie modifitsirovaniya ultradispersnyimi poroshkami oksidov tugoplavkih metallov i kriolita na strukturu, mehanicheskie svoystva i razrushenie chuguna СЧ25. [Influence of modification of ultradisperse powders of refractory metal oxides and cryolite on the structure, mechanical properties and destruction of cast iron СЧ25]. Izv. vuzov. Chernaya metallurgiya, Vol. 57, no. 11, pp. 37–42 [in Russian].

Korotaeva, Z. (2008) Poluchenie ultradispersnyih poroshkov mehanohimicheskim sposobom i ih primenenie dlya modifitsirovaniya materialov [Preparation of ultradisperse powders by the mechanochemical method and their application for the modification of materials]. Extended abstract of candidate’s thesis. Kemerovo [in Russian].

Kopycinski, D.(2009) Inoculation of chromium white cast iron. Archives of foundry engineering. Vol. 9, Iss. 1, pp. 191–194 [in English].

Hou, Y., Wang, Y., Pan, Z., Yu, L. (2012) Influence of rare earth nanoparticles and inoculants on performance and microstructure of high chromium cast iron. Journal of Rare Earths, Vol. 30, Iss. 3, pp. 283–288 [in English].

Chung, R.J., Tang, X., Li, D.Y., Hinckley, B., Dolman, K. (2013) Microstructure refinement of hypereutectic high Cr cast irons using hard carbide-forming elements for improved wear resistance. Wear, Vol. 301, Iss. 1–2, pp. 695–706 [in English].

Collini, L., Nicoletto, G., Konečna, R. (2008) Microstructure and mechanical properties of pearlitic gray cast iron. Materials Science and Engineering A., Vol. 488, Iss. 1–2, pp. 529–539 [in English].

Olsen, S.O., Skaland, T., Hartung, C. (2004) Inoculation of grey and ductile iron a comparison of nucleation sites and some practical advises. 66th World Foundry Congress, 6–9 September 2004, Istanbul, Turkey; Proceedings. Vol. 1, pp. 12 [in English].

Jezierski, J., Bartocha, D. (2007) Properties of cast iron modifying with use of new inoculants. Journal of achievements in materials and manufacturing engineering, Vol. 22, Iss. 1, pp. 25–28 [in English].

Akira, O., Hidekazu, M. (1994) Inoculation mechanism of grey cast iron. Technology reports Kansai University, no. 36, pp. 85–95 [in English].

Fras, E., Gorny, M. (2012) An inoculation phenomenon in cast iron. Archives of metallurgy and materials, Vol. 57, Iss. 3, pp. 767–777 [in English].

Ferro, P., Fabrizi ,A., Cervo, R., Carollo, C. (2013) Effect of inoculant containing rare earth metals and bismuth on microstructure and mechanical properties of heavy-section near-eutectic ductile iron castings. Journal of Materials Processing Technology, Vol. 213, Iss. 9, pp. 1601–1608 [in English].

Poluboyarov, V. (2010) Ultra- i nanodispersnyie keramicheskie poroshki dlya modifikatsii metallov i splavov [Ultra- and nanodispersed ceramic powders for the modification of metals and alloys]. Tsvetnyie metallyi: sb. dokladov II Mezhdunarodnogo kongressa. Krasnoyarsk, pp. 624–627 [in Russian].

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Опубліковано

01-08-2018

Як цитувати

Верховлюк, А. М. ., Сергиенко, Р. А. ., Щерецкий, А. А. ., Науменко, М. И. ., & Афанасиев, М. В. . (2018). МОДИФІКАТОРИ НА ОСНОВІ УЛЬТРА- І НАНОДИСПЕРСНИХ ПОРОШКОВИХ МАТЕРІАЛІВ ДЛЯ СПЛАВІВ НА ОСНОВІ ЗАЛІЗА. Процеси лиття, 130(4), 12–27. вилучено із https://plit-periodical.org.ua/index.php/plit/article/view/171

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