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21st Century Niobium-Bearing Structural Steels

机译:21世纪含铌结构钢

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摘要

Value-added applications of niobium (Nb) microalloyed steels continue to be developed for commercial implementation to meet increased material demands and improved properties for 21st century structural applications. These applications demand Nb-bearing steels that deliver improved toughness, fracture and fire resistance and weldability. Such applications include medium and jumbo beam, boiler, bridge, container, heavy equipment, long product, pressure vessel, ship,storage tank and windtower applications. Steel producers are challenged to develop microalloyed steel grades that cost effectively meet end user demands for higher strength at thinner cross sections, better low temperature toughness to resist brittle fracture in building, pressure vessel and ship structures, sustain higher loads per unit area in earthquake and hurricane zone product applications, demonstrate improved fire-resistance in buildings, bridges and tunnels and provide overall improved weldability.Niobium is often a key element to achieve these results. This paper will discuss Nb market opportunities and key operational practices required to successfully melt, cast and roll these high strength steel grades. Niobium process metallurgy is important to leverage the ability of niobium to obtain ultra-fine grain, homogeneous structural steel microstructures with superior mechanical properties. The process metallurgy, physical metallurgy and resultant properties are significantly determined by mill capabilities,mill practices, operational understanding and the culture of the steel mill. The optimal combination and implementation aspects that are unique to each mill we call metallurgical operational integration (MOI)(C). MOI is the bridge that links the product requirements to mill capability and process implementation.
机译:铌(Nb)微合金钢的增值应用一直在为商业应用开发,以满足21世纪结构应用对材料的不断增长的需求和更高的性能。这些应用要求使用含铌钢,以提高韧性,断裂和耐火性以及可焊性。此类应用包括中型和大型梁,锅炉,桥梁,集装箱,重型设备,长产品,压力容器,船舶,储罐和风塔应用。钢铁生产商面临着开发微合金钢的挑战,这些合金能够有效地满足最终用户的要求,以使其在更薄的截面上具有更高的强度,更好的低温韧性以抵抗建筑物,压力容器和船舶结构中的脆性断裂,在地震和地震中承受更高的单位面积载荷。飓风带产品的应用证明了建筑物,桥梁和隧道的耐火性得到了改善,并提供了总体上可改善的可焊接性。铌通常是实现这些结果的关键元素。本文将讨论成功熔化,铸造和轧制这些高强度钢种所需的铌市场机遇和关键操作实践。铌工艺冶金对于利用铌获得具有超强机械性能的超细晶粒,均质结构钢显微组织的能力非常重要。冶炼工艺,冶炼工艺,操作理解以及钢厂的文化在很大程度上决定了工艺冶金,物理冶金和最终性能。每个工厂独有的最佳组合和实施方面,我们称为冶金操作集成(MOI)(C)。 MOI是将产品需求与工厂能力和过程实施联系起来的桥梁。

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