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Microstructure and Mechanical Properties of Intercritical Annealed Multiphase Ultrahigh Strength Steel

机译:临界间退火多相超高强度钢的组织和力学性能

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In recent years, more and more ultrahigh strength steels are used in automotive industry, including dual-phase steels and complex phase steels, which are formed using cold stamp forming and roll-forming process. In this paper, a cold rolled ultrahigh strength steel was studied, and different intercritical annealing parameters were adopted to get different microstructures of the steels. Scanning electronic microscopy (SEM) and transition electronic microscopy (TEM) were used to analyze the microstructure evolution of the multiphase ultrahigh strength steels. Tensile tests and hole expansion tests were also adopted to evaluate the mechanical properties and hole expansion properties of the multiphase ultrahigh strength steels. The results show that with increasing intercritical annealing temperatures, the yield strength and ultimate tensile strength of the steels increase with elongation decrease simultaneously, furthermore the yield ratio is also improved. The microstructure of the steels contain a mixture of bainite, martensite and ferrite, and with increasing annealing temperatures, the content of martensite decrease. Meanwhile, the content of tempered martensite increase gradually. With increasing annealing temperatures, the hole expansion ratio increases first and then slightly decreases.
机译:近年来,越来越多的超高强度钢用于汽车工业,包括双相钢和复相钢,它们是通过冷冲压成型和辊压成型工艺形成的。本文研究了一种冷轧超高强度钢,并采用不同的临界退火参数来获得不同的钢组织。用扫描电子显微镜(SEM)和过渡电子显微镜(TEM)分析了多相超高强度钢的组织演变。还通过拉伸试验和扩孔试验来评估多相超高强度钢的力学性能和扩孔性能。结果表明,随着临界退火温度的升高,钢的屈服强度和极限抗拉强度随着伸长率的降低而同时增加,并且屈服比也有所提高。钢的显微组织包含贝氏体,马氏体和铁素体的混合物,并且随着退火温度的升高,马氏体的含量降低。同时,回火马氏体的含量逐渐增加。随着退火温度的升高,扩孔率先增加,然后略有下降。

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