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Coarsening Behavior of Nanometer-sized Carbides in Hot-rolled High Strength Sheet Steel

机译:热轧高强度钢板中纳米尺寸碳化物的粗化行为

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摘要

This study deals with a relationship between strength and coiling temperature of high strength hot-rolled sheet steels consisting of ferrite and nanometer-sized carbides in order to evaluate the stability of the strength against the variation of the coiling temperature. Ti-Mo-bearing and Ti-bearing steels were prepared to form (Ti,Mo)C and TiC in ferrite matrix, respectively. Ti-Mo-bearing steel exhibited the high strength even under the high temperature coiling while the strength of Ti-bearing steel decreased significantly. Ti-bearing steel just after transforming at 923K had the same hardness as that at 898K. In addition, hardness of Ti-bearing steel coiled at 898K decreased significantly by holding at 923K for 8.64ks while Ti-Mo-bearing steel did not represent a large change in hardness. These results confirm that (Ti,Mo)C is not coarsened easily by Ostwald ripening at the high coiling temperature unlike TiC. Consequently the retardation of Ostwald ripening of (Ti,Mo)C is attributed to the small amount of titanium in solution in Ti-Mo-bearing steel.
机译:本研究研究了由铁素体和纳米尺寸碳化物组成的高强度热轧钢板的强度与卷取温度之间的关系,以评估强度对卷取温度变化的稳定性。制备了含Ti-Mo的钢和含Ti的钢,分别在铁素体基体中形成(Ti,Mo)C和TiC。含Ti-Mo的钢即使在高温卷取下也显示出高强度,而含Ti的钢的强度则明显降低。刚在923K转变的含钛钢具有与898K相同的硬度。另外,在898K处盘绕的含Ti钢的硬度通过在923K处保持8.64ks而显着降低,而含Ti-Mo的钢的硬度变化不大。这些结果证实,与TiC不同,在高卷取温度下,Ostwald熟化不容易使(Ti,Mo)C粗化。因此,(Ti,Mo)C的奥斯特瓦尔德熟化的延迟归因于含Ti-Mo的钢中溶液中钛的含量很少。

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