首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Microstructure Characteristic and Strengthening Mechanism of Ti-Microalloyed Automobile Beam Steel Produced by Compact Strip Production
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Microstructure Characteristic and Strengthening Mechanism of Ti-Microalloyed Automobile Beam Steel Produced by Compact Strip Production

机译:紧凑带钢生产的钛微合金汽车梁钢的组织特征和强化机理

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摘要

The microstructure characteristics, precipitation behavior and misorientation of automobile beam steels produced by Compact Strip Production (CSP) were investigated by use of scanning electron microscopy (SEM), transmission electron microscopy (TEM) and electron back scattered diffraction (EBSD), etc. It is shown that the final microstructure is mainly of polygonal ferrite and some pearlite, the average ferrite grain size is about 4-5μm. It is also noticed that some fraction of granular bainite appears in the microstructure. The precipitation behavior of Ti(C,N) precipitates was studied by using TEM and electrolytic dissolution technique analysis. The experimental results show that large amount of fine Ti(C,N) precipitates with about 10-30nm in size exist in Ti-microalloyed steel. It is proposed that besides the grain refinement, the nano-precipitates play an important role in precipitation strengthening. The EBSD results show that grain boundaries in ferrite are basically high-angle grain boundaries (HAGBs). So the hot rolled austenite is deduced to be comprised mostly recrystallized austenite. Refinement strengthening is the predominant strengthening mode, solid solution strengthening, precipitation strengthening and dislocation strengthening are second to it.
机译:利用扫描电子显微镜(SEM),透射电子显微镜(TEM)和电子背散射衍射(EBSD)等方法,研究了紧凑带材生产(CSP)生产的汽车型钢的组织特征,析出行为和取向错误。结果表明,最终的显微组织主要为多边形铁素体和一些珠光体,平均铁素体晶粒尺寸约为4-5μm。还注意到在显微组织中出现了一定比例的颗粒贝氏体。利用TEM和电解溶解技术分析了Ti(C,N)沉淀物的沉淀行为。实验结果表明,在钛微合金钢中存在大量尺寸约为10-30nm的细Ti(C,N)析出物。提出了除了晶粒细化之外,纳米沉淀物在沉淀强化中起重要作用。 EBSD结果表明,铁素体中的晶界基本上是高角度晶界(HAGB)。因此推断出热轧奥氏体主要由重结晶奥氏体组成。细化强化是主要的强化方式,其次是固溶强化,沉淀强化和位错强化。

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