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The effect of finish rolling temperature on the microstructure and properties of non-quenched and tempered Bainite steel

机译:结束轧制温度对非淬火和钢材钢铁钢微观结构和性能的影响

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Non-quenched and tempered steel has excellent properties, and the production process of it is energy-saving, low-cost and eco-friendly. With these advantages, non-quenched and tempered steel attracts more attentions and has been widely used in recent years. Existing non-quenched and tempered micro alloyed steel is roughly divided into three categories: ferrite-pearl steel, bainite steel and martensitic steel. The strength and toughness of bainite steel is better than ferrite-pearlite steel, but less research of bainite steel has been done, especially its rolling process. In this paper, the effect of finish rolling temperature on the microstructure and properties of bainite non-quenched and tempered steel is studied. The results show that with different finish rolling temperature, the mechanical property of bainite steel has distinctions, along with the phase composition, the morphology and distribution of lath bainite, the amount of retained austenite, the difference between grain boundary orientations, recovery and recrystallization phenomena, and phase relation of lath bainite and parent phase. When finish rolling temperature is high (870°C), the ductility and toughness of bainite steel sample is better than others while the strength is lower. The amount of lath bainite is about 85%, which is the highest among the samples, and the width of lath bainite is small. With finish rolling temperature decreases, the strength of bainite steel sample increases at the cost of toughness. The diffusion of carbon atoms is slowed down due to the lower temperature, and as a result, the stability of austenite decreases, and martensite phase transformation occurs in the following cooling process. The portion of high-angle grain boundaries decreases as the finish rolling temperature decreases, while the phase relation of lath bainite and parent phase remains the same.
机译:非淬火和钢化钢具有优异的性能,并且生产过程是节能,低成本和环保。通过这些优点,非淬火和钢化钢吸引了更多的注意,并且近年来已被广泛使用。现有的非淬火和钢化微合金钢大致分为三类:铁氧体 - 珍珠钢,贝氏体钢和马氏体钢。贝氏体钢的强度和韧性优于铁氧体 - 珠光体钢,但已经完成了对贝氏体钢的研究,特别是其轧制工艺。本文研究了结束轧制温度对贝氏体非淬火和钢化钢的微观结构和性能的影响。结果表明,随着轧制温度的不同,贝氏体钢的力学性能具有区别,随着相位成分,Lath Bainite的形态和分布,保留奥氏体的量,晶界取向,回收和重结晶的差异和Lath Bainite和父阶段的相关系。当完成轧制温度高(870°C)时,贝氏体钢样品的延展性和韧性比其他稳定性更好,而强度较低。 Lath Bainite的数量约为85%,这是样品中最高的,Lath Bainite的宽度很小。随着轧制温度降低,贝氏体钢样品的强度以韧性成本增加。由于温度较低,碳原子的扩散减慢,结果,奥氏体的稳定性降低,并且在下列冷却过程中发生马氏体相变。随着轧辊温度降低,高角度晶界的一部分降低,而Lath Bainite和父相的相位关系保持不变。

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