Role of niobium in a dual-phase steel

J. Guimarães, K. Chawla, P. R. Rios, J. M. Rigsbee
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引用次数: 2

Abstract

AbstractTwo hot-rolled high-strength, low-alloy steels, one microalloyed with niobium, were intercritically annealed at 740°C for 10 min and cooled to produce a dual-phase microstructure. Although both steels showed tensile properties typical of dual-phase microstructures, only the niobium-microalloyed steel could match the mechanical characteristics of a typical commercial dual-phase steel. The role of the niobium would appear to be to provide a suitable level of strength in the initial, as-rolled state of the steel, since the properties in the dual-phase state were found to be a function of the initial state of the steel. A normalizing treatment resulted in grain refinement in both steels, but transmission electron microscopy observations showed that in the niobium-containing steel this was counterbalanced by an increase in Nb(C, N) precipitate size. The normalizing treatment thus equalized the mechanical properties of the initial state of the two steels, leading to similar dual-phase properties in both...
铌在双相钢中的作用
摘要将两种热轧高强度低合金钢(其中一种为铌微合金钢)在740℃下退火10 min后进行冷却,得到双相组织。虽然两种钢都表现出典型的双相组织的拉伸性能,但只有铌微合金钢才能达到典型的商业双相钢的力学特性。铌的作用似乎是在钢的初始轧制状态下提供适当的强度水平,因为双相状态下的性能被发现是钢的初始状态的函数。正火处理导致两种钢的晶粒细化,但透射电镜观察表明,在含铌钢中,这被Nb(C, N)析出物尺寸的增加所抵消。正火处理使两种钢初始状态的力学性能相等,导致两种钢的双相性能相似。
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