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Effects of tungsten on continuous cooling transformation characteristics of microalloyed steels

机译:钨对微合金钢连续冷却转变特性的影响

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摘要

Continuous cooling transformation (CCT) characteristics of microalloyed steels with different tungsten (W) contents (0, 0.1 and 1. wt.%) were investigated to obtain the necessary information for heat treatment of these steels. The effects of W addition on the sizes of prior austenite grains and precipitates were analysed. CCT diagrams were obtained by varying the cooling rates from 0.1 to 120. °C/s. Transformation characteristics were determined by using dilatometer test, microscopic observation and hardness measurement. The results showed that W had a positive effect on the refinement of prior austenite grains and precipitates. The CCT diagrams exhibited that the ranges of transformation products were shifted to the right side of the diagram when the W content increased. CCT diagram for steel with 0.1% W was similar in shape to that without W. The addition of 1% W induced two separated transformation ranges in the cooling rate range of 0.1 to 1. °C/s in the diagram. Both the austenitisation starting and finishing temperatures were raised as W was added. W addition induced decreased critical cooling rates for phase transformations and obtaining complete ferrite + pearlite microstructures. The martensite transformation temperature was decreased after W addition. The addition of W caused increased hardness, and the hardness obeyed an exponential type relationship with cooling rate.
机译:研究了不同钨(W)含量(0、0.1和1. wt。%)的微合金钢的连续冷却转变(CCT)特性,以获得热处理所需的信息。分析了添加钨对原奥氏体晶粒尺寸和析出物的影响。通过将冷却速率从0.1更改为120.°C / s,可以获得CCT图。通过使用膨胀计测试,显微镜观察和硬度测量来确定转变特性。结果表明,W对先前奥氏体晶粒和析出物的细化具有积极作用。 CCT图显示出当W含量增加时,转化产物的范围向图的右侧移动。含0.1%W的钢的CCT图的形状与不含W的钢相似。在图中,添加1%W会在冷却速率为0.1至1°C / s的范围内引起两个分离的转变范围。随着加入W,奥氏体化的开始和结束温度均升高。钨的添加降低了相变的临界冷却速率,并获得了完整的铁素体+珠光体微结构。添加W后,马氏体相变温度降低。 W的添加导致硬度增加,并且硬度与冷却速率服从指数型关系。

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