贝氏体
材料科学
奥氏体
铁氧体(磁铁)
冶金
微观结构
等温淬火
碳钢
连续冷却转变
复合材料
腐蚀
作者
Xiaoqing Zhou,Hongpo Wang,Mingjian Chen,Li Shi,Yu Wang
出处
期刊:Springer eBooks
[Springer Nature]
日期:2022-01-01
卷期号:: 403-412
标识
DOI:10.1007/978-3-030-92388-4_36
摘要
Microstructure and grain size are important factors affecting the mechanical properties of low-carbon bainite steels. The influence of austenitization and cooling rate on the phase transformation of low-carbon bainite steel was investigated. The results show that the continuous cooling microstructure of low-carbon bainite steel was determined by pre-deformation, austenitization temperature, and cooling rate. The austenitizing process significantly affected the phase transformation of low-carbon bainite steel. When samples were heated in the range of 830–930 °C, their austenite grain sizes were relatively small with a maximum of 12.3 μm; when they were cooled at the cooling rate range of 1–30 °C/s, the microstructures consisted of mainly a large amount of ferrite and a small amount of retained austenite. When the austenitizing temperature increased to 1220 °C, the austenite grain size increased to 71.2 μm. The structure was mainly proeutectoid ferrite and granular bainite at the cooling rate of 1 °C/s. As the cooling rate increased, the amount of proeutectoid ferrite reduced, and the amount of bainite increased, resulting in a higher hardness. When the cooling rate was 10 °C/s, the proeutectoid ferrite disappeared completely, and the bainite was further refined.KeywordsLow-carbon bainite steelBainite transformationAustenitizationCooling rate
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