首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Effects of Alloying Elements and the Cooling Condition on the Microstructure, Tensile Properties, and Charpy Impact Properties of High-Strength Bainitic Steels
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Effects of Alloying Elements and the Cooling Condition on the Microstructure, Tensile Properties, and Charpy Impact Properties of High-Strength Bainitic Steels

机译:合金元素和冷却条件对高强度贝氏体钢组织,拉伸性能和夏比冲击性能的影响

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摘要

The effects of alloying elements and the cooling condition on the microstructure, tensile properties, and Charpy impact properties of high-strength bainitic steel plates fabricated by a controlled rolling process were investigated in the present study. Eight kinds of steel plates were fabricated by varying C, Cr, and Nb additions under two different cooling rates, and their microstructures and tensile and Charpy impact properties were evaluated. The microstructures present in the steels increased in the order of granular bainite, acicular ferrite, bainitic ferrite, and martensite as the carbon equivalent or cooling rate increased, which resulted in a decrease in the ductility and Charpy absorbed energy. The steels containing a considerable amount of bainitic ferrite or martensite showed very high strengths, together with good ductility and Charpy absorbed energy. In order to achieve the best combination of strength, ductility, and Charpy absorbed energy, granular bainite and acicular ferrite were properly included in the high-strength bainitic steels by controlling the carbon equivalent and cooling rate, while about 50 vol.% of bainitic ferrite or martensite was maintained to maintain the high strength.
机译:研究了合金元素和冷却条件对通过控制轧制工艺制备的高强度贝氏体钢板的组织,拉伸性能和夏比冲击性能的影响。通过在两种不同的冷却速率下改变C,Cr和Nb的添加量来制造八种钢板,并评估了它们的微观结构以及拉伸和夏比冲击性能。随着碳当量或冷却速率的增加,钢中存在的显微组织以粒状贝氏体,针状铁素体,贝氏体铁素体和马氏体的顺序增加,这导致延性和夏比吸收能的降低。含有大量贝氏体铁素体或马氏体的钢具有很高的强度,并具有良好的延展性和夏比吸收能。为了获得强度,延展性和夏比吸收能的最佳组合,通过控制碳当量和冷却速率,在高强度贝氏体钢中适当地加入了颗粒贝氏体和针状铁素体,而贝氏体铁素体的含量约为50%(体积)。或保持马氏体以保持高强度。

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