Оптимізація хімічних складів біметалевих виливків: Processy litʹâ, 2019, Tom 134, №2, p.49-54

Received 27.12.2018 UDK 669:539.4(075.8) Based on the analysis of the formation of the compound of the steel base and the cast-iron working layer of bimetallic castings, it has been established that a high-quality compound, when liquid iron is poured on solid steel base located in the mold, occurs w...

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Бібліографічні деталі
Дата:2019
Автори: Афтанділянц, Є. Г., Лихошва, В. П.
Формат: Стаття
Мова:Ukrainian
Опубліковано: National Academy of Sciences of Ukraine, Physical-Technological Institute of Metals and Alloys of NAS of Ukraine 2019
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Онлайн доступ:https://plit-periodical.org.ua/index.php/plit/article/view/142
Теги: Додати тег
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Назва журналу:Casting Processes

Репозитарії

Casting Processes
Опис
Резюме:Received 27.12.2018 UDK 669:539.4(075.8) Based on the analysis of the formation of the compound of the steel base and the cast-iron working layer of bimetallic castings, it has been established that a high-quality compound, when liquid iron is poured on solid steel base located in the mold, occurs when cast iron temperature is less than the temperature of steel solidification. Taking into account that the cast iron pouring and steel solidus temperatures are depended from their chemical composition, quantitative regularities of the chemical composition influence on these characteristics are established. Carbon equivalent was taken as integral parameter of the steel and cast iron chemical composition. Quantitative regularities are established of influence of the carbon equivalent on the temperatures of solidus steel and liquidus cast iron, as well as pouring of cast iron. The conditions are given of obtaining a qualitative diffusion compound of a cast-iron working layer and a steel base and an example of determining the optimal chemical compositions of a steel base and a cast-iron working layer in the manufacture of bimetallic hammer.It is shown that strength of the connection between the steel base and the cast iron working layer increases in 1.8−2.4 times for optimizing the chemical compositions of bimetallic castings, in comparison with the bimetallic castings with not optimized chemical composition.