马氏体
贝氏体
材料科学
奥氏体
体积分数
碳纤维
热力学
指数函数
分数(化学)
冶金
微观结构
复合材料
数学
物理
数学分析
有机化学
化学
复合数
标识
DOI:10.1179/1743284711y.0000000097
摘要
Analysis of published data demonstrates that the start temperatures of bainite ( B s ) and martensite ( M s ) formation exhibit an exponential carbon dependence. Empirical models are proposed to describe this specific carbon dependence. The models are relatively simple and sufficiently accurate for conventional steels with 0·1–1·9 wt- carbon and less than 7 wt- in total of other alloying elements. Predictions of the B s and M s temperatures show a better accuracy than those obtained with equations from literature. An improved prediction of the M s temperature is important to accurately determine of the amount of martensite at a certain arrest temperature using the Koistinen and Marburger (KM) equation. Predictions of the volume fraction martensite are also influenced by the rate parameter α m controlling the kinetics of martensite formation. Based on the improved models for the composition dependence of M s and α m , the volume fraction of retained austenite at room temperature has been calculated for Fe–C alloys. The calculated fraction of retained austenite as a function of carbon content is found to be in good agreement with published data, which gives confidence in the proposed models for M s and α m .
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