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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:原始组织对超高强度TRIP辅助钢的相变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:通过汽车应用的不同热处理研究了超高强度相变诱导塑性(TRIP)钢(0.2C-2.0Si-1.8Mn)的相变行为和拉伸性能。结果表明,F-TRIP钢是一种传统的TRIP钢,包含冷轧铁素体和珠光体作为原始组织,由临界晶格的铁素体的等轴晶粒包围着M / RA和B的离散颗粒组成。相比之下,M- TRIP钢是一种以马氏体为原始显微组织的改良型TRIP辅助钢,包含完整的马氏体为原始显微组织,由板条状的铁素体晶粒组成,并由板条状的马氏体/残余奥氏体和贝氏体隔开。 F-TRIP钢中的大多数奥氏体是颗粒状的,而M-TRIP钢中的奥氏体是板条状的。 F-TRIP钢中残留奥氏体的体积分数及其碳含量低于M-TRIP钢,M-TRIP钢中的奥氏体晶粒比F-TRIP钢中的细得多。因此,可以得出结论,与F-TRIP钢相比,M-TRIP钢具有更高的奥氏体稳定性,从而导致较低的相变速率,从而有助于提高伸长率。还讨论了两种钢的加工硬化行为。

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