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NIOBIUM-BEARING OFFSHORE PLATE STEEL PROCESS METALLURGY, DESIGN AND QUALITY

机译:铌离岸板钢工艺冶金,设计和质量

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Offshore structural steel design and material requirements continue to present increasing challenges for the steelmaker and fabricators. Niobium-bearing steels currently play a key role in meeting these objectives through the Nb-grain refinement mechanism of the microstructure and cost effective steelmaking. These steels possess a combination of exceptional properties with high strength, excellent weldability, high toughness at low temperature, good ductility, excellent corrosion resistance, and high formability. Reduced variation of Charpy toughness through the thickness of heavy plates is imperative in these offshore platforms to enhance reliability and performance. Toughness variation can be reduced through the proper continuous casting and hot rolling mechanical metallurgy process. These high-performance steels (HPS) possess an optimized balance of these properties to provide maximum cost effective performance in offshore structures at strength levels from 355 to 700MPa with excellent corrosion resistance. This combination of good strength-toughness balance, excellent weathering properties and reduced preheat temperatures for welding in these low carbon Nb-structural steels result in significant cost savings. These enhancements provide structural engineers the opportunity to further improve the structural design and offshore platform performance. Lower carbon Nb-alloy designs have exhibited reduced operational production cost at the steel mill as well, thereby embracing the value-added attribute Nb provides to benefit both the producer and the end user throughout the supply chain.
机译:海上结构钢设计和材料要求继续呈现钢材制造商和造型器的越来越大的挑战。轴承钢的目前在通过微观结构的NB晶粒细化机制和成本有效的炼钢方面发挥关键作用。这些钢具有特殊性能的组合,具有高强度,优异的可焊性,在低温下高韧性,良好的延展性,优异的耐腐蚀性和高成形性。通过重型平板厚度降低夏比韧性的变化是在这些海上平台中提高可靠性和性能的必要性。通过适当的连续铸造和热轧机械冶金工艺可以减少韧性变化。这些高性能钢(HPS)具有这些性能的优化平衡,可在近海结构中提供最高成本有效的性能,其强度水平为355至700MPa,具有优异的耐腐蚀性。这种良好的强度 - 韧性平衡,优异的耐候性和降低的预热温度在这些低碳NB结构钢中焊接的组合导致显着的成本节约。这些增强功能提供了结构工程师有机会进一步提高结构设计和海上平台性能。较低的碳纳米合金设计也表现出钢厂的运营生产成本降低,从而拥有增值的属性NB提供,使生产者和最终用户在整个供应链中受益。

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