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首页> 外文期刊>ISIJ international >Effect of Rare Earth Ce on the Morphology and Distribution of Al2O3 Inclusions in High Strength IF Steel Containing Phosphorus during Continuous Casting and Rolling Process
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Effect of Rare Earth Ce on the Morphology and Distribution of Al2O3 Inclusions in High Strength IF Steel Containing Phosphorus during Continuous Casting and Rolling Process

机译:稀土Ce对高强度含磷在连续铸造和轧制过程中磷的高强度的形态和分布的影响

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This paper analyzes the control of Al_(2)O_(3) inclusions in high strength IF steel containing phosphorus. The inclusion statistics and two-dimensional morphology of samples with slab thickness of 1/8, 1/2 and 7/8, and the samples with hot rolling, cold rolling and continuous annealing processes were observed and compared by ASPEX SEM. In addition, the three-dimensional morphology of the inclusions extracted from the electrolysis of slab samples and the original morphology of inclusions from the rolling process samples were observed and compared. The results show that: When rare earth Ce is added to the steel, the combination of Ce with activity O and S in the steel has lower Gibbs free energy, and it is easy to generate CeAlO_(3), Ce_(2)O_(2)S, Ce_(2)O_(3), composite rare earth inclusions combined with other inclusions. The concentration and supersaturation of aluminum and oxygen are reduced, and the ability of single particle Al_(2)O_(3) to aggregate into large-scale cluster inclusions is reduced. The average size of Al_(2)O_(3) inclusions decreased from 5–7 μ m to 2–5 μ m in each thickness direction. The morphology of inclusions changed from long strip, sharp angle and cluster to spherical, spindle and round surface. Meanwhile, the number density of Al_(2)O_(3) inclusions increase, but the area density decreases during continuous casting and rolling process. The size of Al_(2)O_(3) inclusions in the steel without rare earth addition is mostly large-scale strip shape, and it is crushed during rolling,resulting quality defects on the exposed surface and causing the stamping crack problem. When rare earth is added to the steel, the inclusions in the steel change into small-sized circular inclusions with dispersion distribution. The modulus of elasticity is close to that of the steel matrix, which will not affect the continuity of the strip structure, and is beneficial to the relevant properties of the product.
机译:本文分析了含有磷的钢的高强度的al_(2)O_(3)夹杂物的控制。通过Aspex SEM观察并使用具有热轧,冷轧和连续退火工艺的平板厚度的样品的包含统计和二维形态,以及具有热轧,冷轧和连续退火过程的样品。另外,观察到从板式样品的电解中提取的夹杂物的三维形态以及来自滚动工艺样品的夹杂物的原始形态。结果表明:当稀土CE加入钢中时,CE与钢中的活性O和S的组合具有较低的GIBBS自由能量,并且易于产生CEALO_(3),CE_(2)O_( 2)S,CE_(2)O_(3),复合稀土夹杂物与其他夹杂物相结合。铝和氧的浓度和过饱和度降低,并且单颗粒Al_(2)O_(3)骨料聚集成大规模簇夹杂物的能力。 Al_(2)O_(3)夹杂物的平​​均尺寸在每个厚度方向上从5-7μm至2-5μm降低。夹杂物的形态从长条状,尖锐角度和簇变为球形,主轴和圆形表面。同时,Al_(2)O_(3)夹杂物的数量密度增加,但在连续铸造和轧制过程中面积密度降低。钢的尺寸为钢中没有稀土的夹杂物大多是大规模的条形形状,在轧制过程中被压碎,导致暴露表面上的质量缺陷并导致冲压裂纹问题。当稀土加入钢时,钢中的夹杂物在具有分散分布的小尺寸圆形夹杂物中变化。弹性模量接近钢基质的模量,这不会影响条带结构的连续性,并且有利于产品的相关性质。

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