临界间退火温度对低合金双相Fe/0.08C/0.4Mn钢力学性能的影响

A. O. Ogunmefun, T. Jamiru, E. Sadiku, B. Obadele, E. Olorundaisi
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引用次数: 1

摘要

研究了临界间退火温度对低合金双相Fe/0.083 3c /0.4Mn钢力学行为的影响。通过热处理对低碳锰钢基体进行均匀化和正态化处理。直接退火热处理分别在735℃、755℃、795℃和830℃进行,并在冷水中突然淬火。得到双相铁素体-马氏体钢。拉伸和屈服试验通过与室温硬度试验的关系式确定。对各试样的微观结构进行了压痕分析。结果表明:双相钢的冲击韧性和延展性在临界温度735℃时达到最佳,强度在755℃时达到最高,温度高于800℃时形成双相组织,830℃时延展性达到最高。
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Intercritical Annealing Temperature: Influence on the Mechanical Properties of Low Alloy Dual-Phase Fe/0.08C/0.4Mn Steel.
A study has been made on the effects of inter-critical annealing temperature on the mechanical behavior of a low alloy dual phase Fe/0.083C/0.4Mn steel. Homogenization and normalization of the substrates via heat treatments were performed on low carbon–manganese steel. The direct annealing heat treatments were carried out at 735°C, 755°C, 795°C and 830°C, and suddenly quenched in cold water. Dual phase ferrite–martensite steel was obtained. Tensile and yield tests were determined through their relationship equation with hardness test at room temperature. Indentation analysis was carried out on the microstructure of each sample. The results revealed that the best mechanical properties in dual-phase steels, e.g., impact toughness and ductility, appear at the inter-critical temperature of 735°C, highest strength at 755°C, duplex microstructure were obtained when the temperature is higher than 800 °C, with the highest ductility properties at 830°C.
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