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Effects of Light and Heavy Rare Earths on Anti-Degradation of Nodular Cast Iron

机译:轻重稀土对球墨铸铁抗降解性能的影响

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The effects of rare earths with different contents on anti-degradation of Y base heavy rare earths-magnesium and cerium base light rare earths-magnesium nodular cast iron were studied. Curves of the relationship between the spheroidization grade of liguid iron treated by different nodulizers and holding time were obtained. The results show that the more the remains of the rare earth, the longer the anti-degradation time, the liquid iron was treated either by Y-Mg-Si or by Ce-Mg-Si nodulizer. When the rare earth remains are above certain quantity, the spheroidization grade starts to decline. When liquid iron treated by either Y-Mg-Si or Ce-Mg-Si nodulizer with proper remains of rare earths about 0.04% ~0.06%(mass fraction), the anti-degradation is the best, and the remains of Mg being about 0.04% ~ 0.07%(mass fraction) . Rare earths-Mg nodulizer with moderate RE remains is better than that of Mg-Si nodulizer in anti-degradation property. However, Y-Mg-Si nodulizer with moderate remins of Re is better than Ce-Mg-Si nodulizer. Sometimes Ce-Mg-Si nodulizer can be used for the production of heavy section nodular cast iron.
机译:研究了不同含量的稀土对Y基重稀土-镁和铈基轻稀土-球墨铸铁抗降解性能的影响。得到了不同球化剂处理的液态铁的球化度与保持时间的关系曲线。结果表明,稀土残留量越多,抗降解时间越长,通过Y-Mg-Si或Ce-Mg-Si球化剂处理铁水。当稀土残留量超过一定数量时,球化度开始下降。当Y-Mg-Si或Ce-Mg-Si球化剂处理过的铁水具有适当的稀土残留量约0.04%〜0.06%(质量分数)时,抗降解性能最好,而Mg残留量约为0.04%〜0.07%(质量分数)。残留稀土元素的镁-镁球化剂的抗降解性能优于镁-硅球化剂。然而,具有适度Re的Y-Mg-Si球化剂比Ce-Mg-Si球化剂更好。有时Ce-Mg-Si球化剂可用于生产重截面球墨铸铁。

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