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首页> 外文期刊>ISIJ international >Improvement of Hot Ductility in the Nb-microalloyed Steel by High Temperature Deformation
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Improvement of Hot Ductility in the Nb-microalloyed Steel by High Temperature Deformation

机译:通过高温变形改善铌微合金钢的热延展性

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摘要

Loss of hot ductility at the straightening stage of the continuous casting of HSLA steel is attributed to different microalloying elements, in particular Nb. However, such elements are essential for the desired mechanical characteristics of final product. Since the chemistry cannot be altered to alleviate the problem, ther-momechanical processing was studied in order to improve the hot ductility. A Nb-microalloyed steel was examined. The thermal history occurring in the continuous casting process was taken into account as well. Firstly, it was noticed that the steel has a low hot ductility after being subjected to in situ melting followed by the thermal schedule. Then, the effect of deformation applied in the vicinity of the δ → γ transformation, while the thermal schedule was being executed, was investigated. Such deformation appeared to improve the hot ductility considerably. Finally, the mechanism of such improvement in the hot ductility was discussed.
机译:HSLA钢连续铸造的矫直阶段热延展性的损失归因于不同的微合金元素,特别是Nb。但是,这些元素对于最终产品的所需机械特性至关重要。由于不能改变化学性质来减轻该问题,因此对热机械加工进行了研究以提高热延展性。检查了Nb微合金钢。还考虑了在连续铸造过程中发生的热历史。首先,注意到在进行原位熔化并随后进行热定型之后,钢具有低的热延展性。然后,研究了在执行热计划时在δ→γ变换附近施加的变形的影响。这种变形似乎大大改善了热延展性。最后,讨论了热延展性改善的机理。

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