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Improvement of hot ductility of C-Mn Steel containing arsenic by rare earth Ce

机译:稀土CE砷砷的热延展性改善

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摘要

The effect of different Ce content on the hot ductility of C-Mn steel containing arsenic was investigated at the temperature ranging from 700 to 1100 degrees C conducting Gleebel-1500 thermal-mechanical simulator. The reduction of area (RA%) was used to evaluate the hot ductility. The 0.16 mass% As widened the ductility trough range and especially, decreased the RA value at 850-950 degrees C. Conversely, adding Ce in the steel could remedy the arsenic-induced hot ductility deterioration. Moreover, with the increase of Ce content from 0 to 0.035 mass%, the RA value at 800-950 degrees C significantly increased, compared to that of the arsenic steel. When the content of Ce reached 0.027-0.035 mass%, the RA value at 800-850 degrees C was even higher than that of steel without As. Besides, the corresponding fracture morphology was changed from intergranular feature to ductile and/or interdendritic feature. Grain refinement by Ce addition, the formation of arsenious rare earth inclusions and grain boundary segregation of Ce were considered to improve the hot ductility of the steel containing As.
机译:在从700至1100摄氏度的温度下,研究了不同CE含量对含有砷的热延展性的影响。使用面积(RA%)的减少来评估热延性。 0.16质量%加宽延性槽范围,特别是在850-950摄氏度下降。相反,钢中加入CE可以弥补砷诱导的热延性劣化。此外,随着0至0.035质量%的CE含量的增加,与砷钢相比,800-950摄氏度的Ra值显着增加。当CE的含量达到0.027-0.035质量%时,800-850摄氏度的RA值甚至高于钢的含量。此外,相应的骨折形态从晶间特征变为延展性和/或植入性特征。通过Ce添加,CE的砷稀土夹杂物的形成被认为是改善含有钢的钢的热延展性。

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