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INFLUENCE OF NITROGEN ON HOT DUCTILITY BEHAVIOR OF MEDIUM CARBON MICROALLOYED STEEL

机译:氮对中碳微合金钢热延性的影响

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The current study aims to estimate the influence of enhanced nitrogen on the hot ductility of medium carbon microalloyed steel. For this purpose, hot tensile tests were carried out at temperatures rangeing from 700°C-1000°C at a true strain rate of 0.001s-1. The fracture surfaces and their neighboring precipitates and matrix microstructures "frozen" in tensile temperatures were observed. The dependence of hot ductility on the fracture mode and in situ microstructural changes were discussed. The results indicate that raising the nitrogen content from 0.003% to 0.014% and 0.021% was found to deteriorate the ductility as the obtained ductility trough became deeper and wider. The trough deepening caused by the addition of nitrogen was due to the formation of film-like ferrite and fine VN precipitation along the austenite grain boundaries promoting low ductility intergranular failure. On the other hand, the retarded dynamic recrystallization, the promoted deformation induced ferrite formation and precipitation at higher temperatures by enhanced nitrogen were regarded as the possible reasons for a wider trough. In summary, the above results indicate the hot ductility of medium carbon microalloyed steels is weakened to some extent by enhanced nitrogen and their windows suitable for continuous casting should be schemed very carefully.
机译:当前的研究旨在评估增强的氮对中碳微合金钢热延展性的影响。为此,在700s-1000°C的温度范围内以0.001s-1的真实应变率进行了热拉伸试验。观察到断裂表面及其附近的析出物和在拉伸温度下“冻结”的基体微观结构。讨论了热延性对断裂模式和原位微结构变化的依赖性。结果表明,发现氮含量从0.003%提高到0.014%和0.021%,随着所获得的延性谷越来越深,延展性恶化。由氮引起的槽状深化是由于形成了膜状铁素体和沿奥氏体晶界的细VN析出,从而促进了低延展性的晶间破坏。另一方面,被认为延迟动态再结晶,促进形变引起的铁素体形成和氮在较高温度下的析出,被认为是形成更宽槽的可能原因。综上所述,以上结果表明中碳微合金钢的热延展性在一定程度上因氮含量的提高而减弱,因此应非常谨慎地设计适合连续铸造的窗口。

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