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Analysis of the Current State and Forecast of Cast Iron Production in Russia

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of the study is to analyze the current state of the cast iron production and to predict production volume and cost in the near future based on the analysis results. Cast iron is one of the most common materials used in various industrial sectors. Cast iron scrap processing is the least expensive and saves both money and time. It is produced both in Russia and abroad and is one of the export types. Cast iron production significantly influences other industrial sectors. All this confirms the relevance of the study. The novelty of the study consists in the identification of the leaders among the cast-iron producers in the world and Russian metallurgical companies, as well as the determination of trends in its production at the present stage of economic development. The increasing consolidation level of cast iron producers has been revealed: China, India, Japan, and Russia represented 85% of the cast iron global production in 2019. In Russia, nine metallurgical companies account for 80% of cast iron production. In general, cast iron production in the world is stable and the import share of cast iron is about 4%. Cast iron prices tend to decline. The work identifies the lower and upper limits of the possible range of the cast iron prices. The authors conclude that the declining prices of cast iron in Russia may make its production unprofitable.
Rocznik
Strony
70--74
Opis fizyczny
Bibliogr. 20 poz., wykr.
Twórcy
  • Moscow Polytechnic University, Moscow, Russia
  • Moscow Polytechnic University, Moscow, Russia
  • Moscow Polytechnic University, Moscow, Russia
  • Kuban State Agrarian University, Krasnodar, Russia
  • Kuban State Agrarian University, Krasnodar, Russia
Bibliografia
  • [1] Arab, N. (2017). Competitive nucleation in grey cast irons. Archives of Foundry Engineering. 17(4), 185-189.
  • [2] Metalbulletin.ru (2020). Cast iron: the first candidate for decline? Retrieved from: https://www.metalbulletin.ru/a/101.
  • [3] Hannapel, J. & Schmeisse, C. (2020). New EPA air emissions standards for iron and steel foundries. Modern Casting. 11, 42-45.
  • [4] Lipshaw, J. (2020). Environmental impact across their life cycles. Modern Casting, 10, 34-38.
  • [5] Promzn.ru (2020). Features of steel production: methods, technologies and raw materials. Retrieved from: https://promzn.ru/metallurgiya/proizvodstvo-stali.html.
  • [6] Stroiset.ru (2020). Analysis and trends in the development of the cast iron market. Retrieved from: https://www.stroiset.ru/analiz-i-tendencii-razvitiya-rynka-chuguna.
  • [7] Metallurgicheskii byulleten (2020). Chugunnye reki i rucheiki. [Cast iron rivers and rivulets. Metallurgical bulletin]. Retrieved from: https://www.metaltorg.ru/analytics /black/?id=759/.
  • [8] MIT Emerging Trends Report (2013). Cambridge, MA: Massachusetts Institute of Technology. Retrieved from: http://2013.forinnovations.org/upload/MIT_Technology_Review.pdf.
  • [9] World Steel Association. 50 years of the World Steel Association. Retrieved from: https://www.worldsteel.org/ publications/bookshop/product-details.~50-years-of-the-World-Steel-Association~PRODUCT~50-years-of-the-World-Steel-Association~.html.
  • [10] Metallosnabzhenie i sbyt: internet-zhurnal. (2018). Kitai prodolzhit sokrashchenie izbytochnykh moshchnostei. [China will continue to reduce excess capacity. Metal supply and sales]. Retrieved from: http://www.metalinfo.ru/ru/ news/100765.
  • [11] Shatokha, V. (2016). Post-Soviet issues and sustainability of ferrous metallurgy in Eastern Europe. Mineral Processing and Extractive Metallurgy, 3, 1-8.
  • [12] Businesstat (2017). Analiz mirovogo rynka chuguna v 2012-2016 gg, prognoz na 2017-2021 gg [Analysis of the global cast iron market between 2012 and 2016; the outlook for the period from 2017 to 2021]. Retrieved from: https://marketing.rbc.ru/research/39673.
  • [13] Profile 2018/2019. World Steel Association [electronic resource] Retrieved from: https://www.worldsteel.org/ publications/bookshop/product-details.~Profile-2017-2018~PRODUCT~Profile2017~.html.
  • [14] Steel Statistical Yearbook 2019. World Steel Association [electronic resource] Retrieved from: http:// https://www.worldsteel.org/publications/bookshop/product-details.~Steel-Statistical-Yearbook-2017~PRODUCT~SSY2017~.html.
  • [15] ACG (2020). Rynok chuguna v Rossii. Tekushchaya situatsiya i prognoz 2020-2024 gg. [Cast iron market in Russia. The current situation and the outlook for the period from 2020 to 2024]. Retrieved from: https://alto-group.ru/otchot/rossija/380-rynok-chuguna-tekushhaya-situaciya-i-prognoz-2014-2018-gg.htm
  • [16] Golubev, S.S., Sekerin, V.D., Gorokhova, A.E., Chebotarev, S.S. & Dobrova, K.B. (2018). Production and technological potential of ironworks. International Journal of Mechanical Engineering & Technology (IJMET). 9(6), 1028-1034.
  • [17] Sekerin, V.D., Dudin, M.N., Bank, S.V., Gorohova, А.Е. & Lesnykh Y.G. (2017). Vertically integrated holdings in the system of developing the national complex of ferrous metallurgy. METALURGIJA. 56, 429-431.
  • [18] AFTERSHOCK (2019). 11 pokazatelei proizvodstva dlya 11 stran mira s 1950 goda [Eleven production measures of 11 countries of the world from 1960]. Retrieved from: https://aftershock.news/?q=node/763326&full/.
  • [19] Metallosnabzhenie i sbyt (2020). Na vsekh rynkakh prodolzhayetsya padeniye tsen na staleliteynoye syr'ye [Prices for steel raw materials continue to fall in all markets]. Retrieved from: https://www.metalinfo.ru/ru/news/114883.
  • [20] Translom. Analitika (2020). Tendentsii na rynke chuguna i ZhRS v marte 2020. [Thrends in the cast iron and the iron ore raw materials market in March 2020]. Retrieved from: http://www.translom.ru/analytic/tendentsii-na-rynke-chuguna-i-zhrs-v-marte20_231.html/.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d0f83f65-0b39-46e0-95b6-1f6c49bb55de
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