Прогнозування умов формування тонкої смуги з високоміцних алюмінієвих сплавів залежно від швидкісних режимів валкового розливання і технологічних параметрів: Processy litʹâ, 2020, Tom 142, №4, p.34-41

Received 15.10.2020 UDK 669.185:66-932 The roller pouring is one of advanced methods of thin metal sheet manufacturing and it is widely used in engineering and other branches of industry. The analysis of influence of speed rates and technological parameters of unit for roller pouring in water-cooled...

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Datum:2020
Hauptverfasser: Тарасевич, М. І., Корнієць, І. В., Ноговіцин, О. В., Токарєва, О. О.
Format: Artikel
Sprache:Ukrainian
Veröffentlicht: National Academy of Sciences of Ukraine, Physical-Technological Institute of Metals and Alloys of NAS of Ukraine 2020
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Online Zugang:https://plit-periodical.org.ua/index.php/plit/article/view/88
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Назва журналу:Casting Processes

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Casting Processes
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Zusammenfassung:Received 15.10.2020 UDK 669.185:66-932 The roller pouring is one of advanced methods of thin metal sheet manufacturing and it is widely used in engineering and other branches of industry. The analysis of influence of speed rates and technological parameters of unit for roller pouring in water-cooled crystallizer (meniscus angle, roller radius, melt overheat temperature) on the condition of metal bar forming from high-strength aluminum alloy with different thickness (2, 3 and 4 mm) was made using methods of mathematical and computing modeling. The series of executed computing experiments allowed to build the analytic dependencies for determination of optimal melt pouring speed under given technological parameters that arranged the solidification of the strips with different thickness on the level of rollers output. For high-strength aluminum alloys there were detected the pouring speeds ranges that determined different conditions of strip forming in inter-roller space and on the level of roller crystallizer output.The obtained results can be used for technology refinement and for choosing balance between technological parameters during roller equipment creation and advancing.