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A Novel Approach for Evaluating the Contraction of Hypo-Peritectic Steels during Initial Solidification by Surface Roughness

机译:通过表面粗糙度评估初凝过程中次包晶钢收缩的新方法

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摘要

The contraction of peritectic steels in the initial solidification has an important influence on the formation of surface defects of continuously cast slabs. In order to understand the contraction behavior of the initial solidification of steels in the mold, the solidification process and surface roughness in a commercial hypo-peritectic and several non-peritectic steels were investigated using Confocal Scanning Laser Microscope (CSLM). The massive transformation of delta-Fe (δ) to austenite (γ) was documented in the hypo-peritectic steel, which caused surface wrinkles and greatly increases the surface roughness of samples in the experiments. Surface roughness (Ra(δ→γ)) was calculated to evaluate the contraction level of the hypo-peritectic steel due to δ–γ transformation. The result shows that the surface roughness method can facilitate the estimation of the contraction level of peritectic transformation over a wide range of cooling rates.
机译:包晶钢在初始凝固中的收缩对连铸板坯表面缺陷的形成有重要影响。为了了解模具中钢的初始凝固的收缩行为,使用共聚焦扫描激光显微镜(CSLM)研究了商用次包晶和几种非包晶钢的凝固过程和表面粗糙度。在亚包晶钢中记录了δ-Fe(δ)向奥氏体(γ)的大量转变,这导致表面起皱并在实验中大大增加了样品的表面粗糙度。计算表面粗糙度(Ra(δ→γ))以评估由于δ-γ相变而引起的包晶钢的收缩水平。结果表明,在较宽的冷却速率范围内,表面粗糙度法可以方便地估计包晶转变的收缩水平。

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