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首页> 外文期刊>Periodica polytechnica >Estimation of Ferrite Grain Size and Mechanical Properties of a 22MnVNb6 Microalloyed Low Carbon Cast Steel
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Estimation of Ferrite Grain Size and Mechanical Properties of a 22MnVNb6 Microalloyed Low Carbon Cast Steel

机译:估计22MnVN6微合金低碳铸钢的铁氧体粒度和力学性能

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The ferrite grain size of a 22MnVNb6 microalloyed steel can be estimated by developing a relationship between ferrite grain size, austenitising temperature and cooling rate from austenitising time, temperature. An extended Hall-Petch relationship was used to estimate the yield stress from the estimation ferrite grain size. Heat treatment as the annealing was used to improve the tensile and hardness properties of the steel. It was shown that the best combination of tensile and hardness properties were achieved when a higher austenitising temperature was used. Transmission electron and optical microscopy were used to study the morphology of ferrite and pearlite formed by the heat treatments. The microstructural studies showed that partition of grain by as-cast state was probably the reason for austenite and ferrite grain size improvement. Considering the experimental results, maximum errors of 14.5% and 7.5% were found in the estimation of ferrite grain size and tensile strength, respectively.
机译:一个22MnVNb6微合金钢的铁素体晶粒尺寸可通过显影铁素体晶粒尺寸之间的关系,奥氏体化温度和从奥氏体化时间,温度冷却速度来估算。扩展霍尔佩奇关系被用来从估计铁素体晶粒尺寸估计屈服应力。热处理如退火来提高钢的拉伸和硬度特性。结果表明,使用了更高的奥氏体化温度时的拉伸强度和硬度特性的最佳组合得以实现。透射电子和光学显微镜被用来研究铁素体和珠光体的由热处理形成的形态。微观结构研究表明谷物该分区由铸态可能是奥氏体和铁素体晶粒尺寸提高的原因。考虑到实验结果,是在铁素体粒径和拉伸强度的估计分别发现的14.5%和7.5%的最大误差。

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