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Effect of cooling process on mechanical properties of thin-gauge hot-rolled dual-phase steel

机译:冷却过程对薄表热轧双相钢力学性能的影响

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The high strength hot-rolled dual-phase steel suitable for a thin slab continuous casting and rolling(TSCR)process was developed by a low C and Nb micro-alloyed design with the controlled rolling and cooling technology.The effect of the isothermal temperature and holding time on the microstructure and mechanical properties of the dual-phase steel was studied using a uniaxial tensile test and optical microscope(OM).The results showed that with the decrease of the isothermal temperature in the ferrite phase transformation region,the thermodynamic conditions of the ferrite transformation were enhanced.The proportion of the ferrite increased while that of martensite decreased,resulting in the reduction of the yield strength and tensile strength and the increase of elongation.With the rise in the isothermal time,the kinetic conditions of the ferrite transformation were enhanced and the proportion of the ferrite increased.The ferrite transformation has completed after 8 seconds of the isothermal holding time,and it was not apparent for increased amount of the transformed ferrite to increase the isothermal time.
机译:适用于薄板连续铸造和轧制(TSCR)工艺的高强度热轧双相钢由具有受控轧制和冷却技术的低C和NB微合金设计开发。等温温度的影响使用单轴拉伸试验和光学显微镜(OM)研究了对双相钢的微观结构和机械性能的保持时间。结果表明,在铁氧体相变区域中的等温温度降低,热力学条件的铁素体转变为铁素体的比例enhanced.The增加而马氏体的下降,导致的屈服强度和拉伸强度和elongation.With的增加而上升,等温时间的减少,铁素体转变的动力学条件增强,铁氧体的比例增加。铁氧体转型在ISOTHE的8秒后完成RMAl保持时间,随着转化的铁氧体的增加而显而易见的是增加等温时间。

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