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Effect of Rare Earth Ce on Deep Stamping Properties of High-Strength Interstitial-Free Steel Containing Phosphorus

机译:稀土铈对高强度含磷无间隙钢深冲模性能的影响

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摘要

The influence of rare earth Ce on the deep stamping property of high-strength interstitial-free (IF) steel containing phosphorus was analyzed. After adding 120 kg ferrocerium alloy (Ce content is 10%) in the steel, the inclusion statistics and the two-dimensional morphology of the samples in the direction of 1/4 thickness of slab and each rolling process were observed and compared by scanning electron microscope (SEM). After the samples in each rolling process were treated by acid leaching, the three-dimensional morphology and components of the second phase precipitates were observed by SEM and energy dispersive spectrometer (EDS). The microstructure of the sample was observed by optical microscope, and the grain size was compared. Meanwhile, the content and strength of the favorable texture were analyzed by X-ray diffraction (XRD). Finally, the mechanical properties of the product were analyzed. The results showed that: (1) The combination of rare earth Ce with activity O and S in steel had lower Gibbs free energy, and it was easy to generate CeAlO , Ce O S, and Ce O . The inclusions size was obviously reduced, but the number of inclusions was increased after adding rare earth. The morphology of inclusions changed from chain and strip to spherical. The size of rare earth inclusions was mostly about 2–5 μm, distributed and dispersed, and their elastic modulus was close to that of steel matrix, which was conducive to improving the structure continuity of steel. (2) The rare earth compound had a high melting point. As a heterogeneous nucleation point, the nucleation rate was increased and the solidification structure was refined. The grade of grain size of products was increased by 1.5 grades, which is helpful to improve the strength and plasticity of metal. (3) Rare earth Ce can inhibit the segregation of P element at the grain boundary and the precipitation of Fe(Nb+Ti)P phase. It can effectively increase the solid solution amount of P element in steel, improve the solid solution strengthening effect of P element in high-strength IF steel, and obtain a large proportion of {111} favorable texture, which is conducive to improving the stamping formability index r value.
机译:分析了稀土铈对含磷高强度无间隙(IF)钢深冲模性能的影响。在钢中添加120 kg铁铈合金(Ce含量为10%)后,观察样品的夹杂物统计和沿板坯1/4厚度方向的二维形貌,并通过扫描电子进行比较。显微镜(SEM)。对各轧制过程中的样品进行酸浸处理后,用扫描电镜和能谱仪观察了第二相析出物的三维形貌和成分。用光学显微镜观察样品的微观结构,并比较晶粒尺寸。同时,通过X射线衍射(XRD)分析了良好织构的含量和强度。最后,分析了产品的机械性能。结果表明:(1)稀土Ce与O和S的活度结合,钢中的Gibbs自由能较低,且容易生成CeAlO,Ce O S和CeO。夹杂物的尺寸明显减小,但是添加稀土后夹杂物的数量增加了。夹杂物的形态从链状和条状变为球形。稀土夹杂物的大小大多为2–5μm,分布且分散,其弹性模量接近钢基体的弹性模量,有利于提高钢的结构连续性。 (2)稀土化合物的熔点高。作为非均相的成核点,成核速率增加并且凝固组织细化。产品的晶粒度等级提高了1.5等级,有助于提高金属的强度和可塑性。 (3)稀土Ce可以抑制P元素在晶界的偏析和Fe(Nb + Ti)P相的析出。它可以有效地增加钢中P元素的固溶量,提高P元素在高强度IF钢中的固溶强化效果,并获得较大比例的{111}良好的织构,有利于提高冲压成形性。索引r值。

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