纳米钢中钒取代铌的案例研究

Z. Arechabaleta Guenechea, S. E. Offerman
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引用次数: 0

摘要

金属中关键合金元素的替代是降低材料临界性的一种策略。纳米钢是一种新型的高级高强度钢,适用于汽车的底盘和悬架以及高层建筑的防火钢。单位质量的高强度和延展性使纳米钢具有资源效率,在保持耐碰撞性能的同时减轻了车辆重量。某些纳米钢的优异机械性能依赖于添加少量(高达0.1 wt.%)的铌作为合金元素到钢中。铌被欧盟认为是一种重要的原材料,因为它作为先进的高强度钢牌号的合金元素具有很高的经济重要性,而且由于供应链内高度垄断生产的高供应风险。本章描述了用钒代替纳米钢中的关键合金元素铌所需的基础材料科学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Substitution Case Study: Replacing Niobium by Vanadium in Nano-Steels
The substitution of critical alloying elements in metals is a strategy to reduce the criticality of materials. Nano-steels are a novel grade of advanced highstrength steels that are suited for application in the chassis and suspension of cars and as fire-resistant steel in high-rise buildings. The high strength and ductility per unit mass make the nano-steels resource-efficient and reduce vehicle weight while maintaining crash worthiness. The excellent mechanical properties of certain nano-steels rely on the addition of small amounts (up to 0.1 wt.%) of Niobium as alloying element to the steel. Niobium is considered to be a critical raw material by the European Union due to its high economic importance as an alloying element in advanced, high-strength steel grades and due to the high supply risk related to the high degree of monopolistic production within the supply chain. This chapter describes the fundamental materials science that is needed for the substitution of the critical alloying element Niobium by Vanadium as an alloying element in nano-steels.
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