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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Analysis and Prevention of Cracking during Strip Casting of AISI 304 Stainless Steel
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Analysis and Prevention of Cracking during Strip Casting of AISI 304 Stainless Steel

机译:AISI 304不锈钢带钢铸造时的裂纹分析与预防

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In this study, a microstructural investigation was conducted on the cracking phenomenon occurring during strip casting of an AISI 304 stainless steel. Detailed microstructural analyses of the cracked regions showed that most of the cracks were deep, sharp, and parallel to the casting direction. They initiated at the tip of dendrites and propagated along the segregated liquid films between primary dendrites, indicating that they were typical solidification cracks. This cracking phenomenon was closely related to the inhomogeneous solidification of cast strips, represented by depressions, i.e., uneven and somewhat concave areas on the strip surface. The depressions, which were unavoidable in flat rolls due to the presence of a gas gap between the roll and the cast strip, were finely and evenly distributed over the cast strip surface by intentionally providing homogeneous roughness on the roll surface; then, the number and size of cracks were considerably reduced. In addition, the nitrogen gas atmosphere, which retained high solubility in the melt during cooling and good wettability with the roll surface, was successfully used to prevent cracking, because the thickness of the gas gap was minimized.
机译:在这项研究中,对AISI 304不锈钢的带钢铸造过程中发生的开裂现象进行了显微组织研究。对裂纹区域的详细显微组织分析表明,大多数裂纹是深的,尖锐的并且平行于铸造方向。它们从树枝状晶体的顶端开始,并沿着原始树枝状晶体之间的分离的液膜传播,这表明它们是典型的凝固裂纹。这种开裂现象与铸带的不均匀凝固密切相关,铸带的不均匀凝固表现为凹陷,即在铸带表面上不均匀且有些凹陷的区域。由于在轧辊和铸带之间存在气隙,在扁平轧辊中不可避免的凹陷通过有意在轧辊表面提供均匀的粗糙度而在铸带表面上均匀细密地分布。然后,裂纹的数量和大小都大大减少了。另外,由于使气隙的厚度最小,所以在冷却期间在熔体中保持高溶解度并且与辊表面的良好润湿性的氮气气氛被成功用于防止破裂。

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