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首页> 外文期刊>Materials Science and Engineering >Effect of holding time at an intercritical temperature on the microstructure and tensile properties of a ferrite-martensite dual phase steel
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Effect of holding time at an intercritical temperature on the microstructure and tensile properties of a ferrite-martensite dual phase steel

机译:临界温度下的保温时间对铁素体-马氏体双相钢组织和拉伸性能的影响

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摘要

To analyze the influence of the initial microstructure in the production of a dual phase (DP) steel on the mechanical properties, a commercial DP steel was subjected to two heat treatments (HT): step quenching (SQ) and intermediate quenching (IQ). SQ samples were austenitized at 930 °C for 20 min, then annealed at 830 °C for 5, 15, 30, 60 and 120 min and finally water quenched. Shorter annealing times show allotriomorphic ferrite and martensite while at longer time polygonal ferrite is formed. Tensile tests showed that yield and tensile strength are higher than those of the commercial DP steel and besides, the uniform elongation is smaller. IQ samples were water quenched after austenitization and then annealed at 830 °C for the same holding times and water quenched again. The microstructure consists of martensite dispersed in a ferrite matrix. The remarkable results are that these samples had similar tensile properties to that of the as-received DP steel. Tensile properties were analyzed as a function of the characteristic microstructure and the assessment of the alloying elements partition during the different HTs. Evaluation of the Kolmogorov-Johnson-Mehl-Avrami theory indicates that the transformation in SQ and in IQ samples corresponds to a diffusional process.
机译:为了分析双相(DP)钢生产中的初始微观结构对机械性能的影响,对商用DP钢进行了两种热处理(HT):逐步淬火(SQ)和中间淬火(IQ)。将SQ样品在930°C下奥氏体化20°min,然后在830°C下退火5、15、30、60和120°min,最后用水淬火。较短的退火时间显示出同质亚铁素体和马氏体,而较长时间形成了多边形铁素体。拉伸试验表明,屈服强度和拉伸强度比市售DP钢高,并且均匀伸长率较小。 IQ样品在奥氏体化后用水淬火,然后在830°C退火相同的保持时间,然后再次将水淬火。显微组织由分散在铁素体基体中的马氏体组成。引人注目的结果是,这些样品的拉伸性能与原先的DP钢相似。拉伸性能根据特征微观结构进行了分析,并评估了不同HT期间合金元素的分布情况。对Kolmogorov-Johnson-Mehl-Avrami理论的评估表明,SQ和IQ样本中的转换对应于扩散过程。

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