View Full-text

pISSN : 1598-706X / eISSN : 2288-8381


(논문)연구논문

한국주조공학회지 (43권6호 279-285)

Prediction of Microstructure and Hardness of the Ductile Cast Iron Heat-treated at the Intercritical Temperatures

임계간 온도에서 열처리한 구상흑연주철의 미세조직 및 경도 예측

Nam-Hyuk Seo*,**, Jun-Hyub Jeon*,**, Soo-Yeong Song***, Jong-Soo Kim*** and Min-Su Kim**,†

*전북대학교 금속공학과, **한국생산기술연구원 전북본부, ***㈜진흥주물 기술연구소

DOI : http://dx.doi.org/10.7777/jkfs.2023.43.6.279

Abstract

In order to predict the mechanical properties of ductile cast iron heat treated in an intercritical temperature range, samples machined from cast iron with a tensile strength of 450 MPa were heat-treated at various intercritical temperatures and air-cooled, after which a micro structural analysis and Brinell hardness test were conducted. As the heat treatment temperature was increased in the intercritical temperature range, the ferrite fraction in the ductile cast iron decreased and the pearlite fraction increased, whereas the nodularity and nodule count did not change considerably from the corresponding values in the as-cast condition. The Brinell hardness values of the heat-treated ductile cast iron increased gradually as the heat treatment temperature was increased. Based on the measured alloy composition, the fraction of each stable phase and the hardness model from the literature, the hardness of the ductile cast iron heat treated in the intercritical temperature range was calculated, showing values very similar to the measured hardness data. In order to check whether it is possible to predict the hardness of heat-treated ductile cast iron by using the phase fraction obtained from thermodynamic calculations, the volumes of graphite, ferrite, and austenite in the alloy were calculated for each temperature condition. Those volume fractions were then converted into areas of each phase for hardness prediction of the heat-treated ductile cast iron. The hardness values of the cast iron samples based on thermodynamic calculations and on the hardness prediction model were similar within an error range up to 27 compared to the measured hardness data.

Keywords

Ductile cast iron, Heat treatment, Intercritical temperature, Microstructure and Brinell hardness.