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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Analysis and Prevention of Vertical Cracking Phenomena During Deep Drawing of Hot-Rolled SG295 Steel Strips
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Analysis and Prevention of Vertical Cracking Phenomena During Deep Drawing of Hot-Rolled SG295 Steel Strips

机译:SG295热轧带钢深冲过程中垂直裂纹现象的分析与预防

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摘要

Microscopic examination and microstructural analysis of vertical cracking phenomena in deep-drawn cups of hot-rolled SG295 steel strips were carried out in this study. Microvoids initiated preferentially at grain-boundary carbides were observed to form intergranular cracks. These grain-boundary carbides were identified as (Fe,Mn)_3C carbides. The morphology of carbides was varied with processing variables, e.g., killing method and coiling temperature. In the Al-killed steels, the carbide shape tends to change from film type to bulk type, which may be beneficial to elongation and consequently formability. In addition, as the coiling temperature increased, the amount of banded pearlite structures and bulk-type carbides increased. These findings suggest that the deep drawability can be improved by modifying the carbide morphology in the microstructures.
机译:本研究对热轧SG295钢带的深冲杯中的垂直裂纹现象进行了显微检查和微观结构分析。观察到优先在晶界碳化物处引发的微孔形成了晶间裂纹。这些晶界碳化物被鉴定为(Fe,Mn)_3C碳化物。碳化物的形态随加工变量例如淬火方法和卷取温度而变化。在铝镇静钢中,碳化物的形状趋于从薄膜类型变为块状,这可能有利于延伸率,进而有利于可成形性。另外,随着卷取温度的升高,带状珠光体组织和块状碳化物的数量增加。这些发现表明,可通过改变微观结构中的碳化物形态来改善深冲性。

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