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http://dx.doi.org/10.7777/jkfs.2020.40.2.25

Effects of Mold Variable and Main Alloying Element on the Mechanical Properties of Ductile Cast Iron Poured into Shell Stack Mold  

Kim, Hyo-Min (Dept. of Advenced Root Industry Eng., Graduated School, Yeungnam Univ.)
Kwon, Min-Young (Dept. of Mat. Sci. & Eng., Graduated School, Yeungnam Univ.)
Chun, Byung-Chul (Haewon Ind. Inc.)
Kwon, Do-Young (Haewon Ind. Inc.)
Kim, Gi-Yeob (Dept. of Advanced Material Application., Korea Polytechnics Colleges)
Kwon, Hae-Wook (School of Mat. Sci & Eng., Yeungnam Univ.)
Publication Information
Journal of Korea Foundry Society / v.40, no.2, 2020 , pp. 25-33 More about this Journal
Abstract
The effects of mold variable and main alloying element on the mechanical properties of ductile cast iron poured into shell stack mold were investigated. The strength and hardness of with the smaller cross-section of the diameter of 6.25mm were higher than those of 12.50mm. On the other hand, the elongation of the former was lower than that of the latter. The strength and hardness of the specimens obtained from the center layer in the 5-story stack mold were the lowest and those for other specimens were increased with increased distance from the center. The elongation of those were the highest of all. The strength and hardness of the specimens obtained from the center layer were decreased the elongation was increased with the increased number of layers. The strength and hardness were increased and the elongation was decreased roughly with the increased amounts of reaidual magnesium and carbon content added, respectively. The strength and hardness were increased and the elongation was decreased roughly with the increased amounts of silicon content added to 2.45wt% and rather decreased with that to 2.85wt%. The effect of silicon content showed the opposite tendency to those of residual magnesium and carbon content.
Keywords
Ductlie cast iron; Mechanical properties; Shell stack mold; Alloying element; Cast iron;
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