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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Influence of original microstructure on the transformation behavior and mechanical properties of ultra-high-strength TRIP-aided steel
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Influence of original microstructure on the transformation behavior and mechanical properties of ultra-high-strength TRIP-aided steel

机译:原始微观结构对超高强度牵引钢的转化行为和力学性能的影响

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摘要

The transformation behavior and tensile properties of an ultra-high-strength transformation-induced plasticity (TRIP) steel (0.2C-2.0Si-1.8Mn) were investigated by different heat treatments for automobile applications. The results show that F-TRIP steel, a traditional TRIP steel containing as-cold-rolled ferrite and pearlite as the original microstructure, consists of equiaxed grains of intercritical ferrite surrounded by discrete particles of M/RA and B. In contrast, M-TRIP steel, a modified TRIP-aided steel with martensite as the original microstructure, containing full martensite as the original microstructure is comprised of lath-shaped grains of ferrite separated by lath-shaped martensite/retained austenite and bainite. Most of the austenite in F-TRIP steel is granular, while the austenite in M-TRIP steel is lath-shaped. The volume fraction of the retained austenite as well as its carbon content is lower in F-TRIP steel than in M-TRIP steel, and austenite grains in M-TRIP steel are much finer than those in F-TRIP steel. Therefore, M-TRIP steel was concluded to have a higher austenite stability, resulting in a lower transformation rate and consequently contributing to a higher elongation compared to F-TRIP steel. Work hardening behavior is also discussed for both types of steel.
机译:通过对汽车应用的不同热处理研究了超高强度转化诱导的塑性(跳闸)钢(0.2C-2.0SI-1.8MN)的转化性能和拉伸性能。结果表明,F跳钢是一种含有冷轧铁氧体和珠光体作为原始微观结构的传统跳闸钢,包括等式的跨临界铁氧体围绕M / Ra和B的离散颗粒。相比之下,M- Trip Steel,一种具有马氏体的改进的行程辅助钢作为原始微观结构,含有全马氏体作为原始微观结构,包括由Lath形马氏体/保留奥氏体和贝氏体分开的车身形状的铁素体组成。 F-Trip钢中的大多数奥氏体是颗粒状的,而M-Traph钢中的奥氏体是Lath形的。在F跳钢中,保留奥氏体的体积分数以及其碳含量低于M-Trap钢,M-Trap Steel中的奥氏体颗粒比F-Trip钢中的奥氏体颗粒更细。因此,结束了M-Traph钢具有更高的奥氏体稳定性,导致转化率较低,因此与F跳钢相比促进更高的伸长率。两种类型的钢也讨论了工作硬化行为。

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