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Role of Niobium in Advanced High Strength Steels for Automotive Applications

机译:铌在汽车用高强度高强度钢中的作用

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Two major drivers for the use of newer steels in the automotive industry is fuel efficiency and increased safety performance. Fuel efficiency is mainly a function of weight of steel parts, which in turn, is controlled by gauge and design. Safety is determined by the energy absorbing capacity of the steel used to make the part. A11 0f these factors are incentives for the U.S.automakers to use Advanced High Strength Steels (AHSS) to replace the conventional steels used to manufacture automotive parts in the past. AHSS is a general term used to describe various families of steels. The most common AHSS is the dual-phase steel that consists of a ferrite-martensite microstructure. These steels are characterized by high strength, good ductility, low tensile to yield strength ratio and high bake-hardenability. Another class of AHSS is the multi-phase steel which have a complex microstructure consisting of various phase constituents and a high yield to tensile strength ratio.Transformation Induced Plasticity (TRIP) steels is the latest class of AHSS steels finding interest among the U.S. automakers.These steels consist of a ferrite-bainite microstructure with significant amount of retained austenite phase and show the highest combination of strength and elongation, so far, among the AHSS in use. High level of energy absorbing capacity combined with a sustained level of high n value up to the limit of uniform elongation as well as high bake hardenability make these steels particularly attractive for safety critical parts and parts needing complex forming. Finally, martensitic steels with very high strengths are also in use for certain parts. The role of Niobium in all of the above families of advanced steels for the automotive industry will be discussed in this paper.
机译:在汽车工业中使用新型钢的两个主要推动因素是燃油效率和更高的安全性能。燃油效率主要取决于钢制零件的重量,而钢制零件的重量又受规格和设计控制。安全性取决于制造零件所用钢的能量吸收能力。 A11 0f这些因素促使美国汽车制造商使用高级高强度钢(AHSS)来代替过去用于制造汽车零件的传统钢。 AHSS是用于描述各种钢材的通用术语。最常见的AHSS是由铁素体-马氏体微结构组成的双相钢。这些钢的特点是强度高,延展性好,拉伸屈服强度比低,烘烤硬化性高。 AHSS的另一类是多相钢,其微观结构复杂,由各种相成分组成,并且屈服强度和抗拉强度比高。相变感应塑性(TRIP)钢是最新的AHSS钢,在美国汽车制造商中引起了人们的兴趣。这些钢由铁素体-贝氏体组织组成,具有大量的残余奥氏体相,是迄今为止使用的AHSS中强度和伸长率最高的组合。高能量吸收能力与持续高水平的n值(直至均匀伸长率的极限)以及高烘烤硬化性相结合,使这些钢特别适合于安全关键型零件和需要复杂成型的零件。最后,某些零件也使用了强度很高的马氏体钢。本文将讨论铌在上述用于汽车工业的所有高级钢系列中的作用。

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