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Pearlite Refining Strategies for Hypoeutectic Gray Cast Iron

机译:红胶灰铸铁的珠光体精炼策略

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摘要

Pearlite refining is one of the most used methods to increase the strength of cast irons, and it can be achieved using different strategies. In this work, three strategies to obtain pearlite refining were applied to a given hypoeutectic gray cast iron centrifuged in a coated steel mold: (1) increasing the Cu, Mo and Cr contents; (2) intensifying the cooling rate of the metallic mold; and (3) cooling of the cast iron with forced air. Strategies 2 and 3 aimed to increase the cooling rate during the eutectoid reaction. Then, four experiments were conducted: a reference experiment and other three applying separately the strategies above. Materials samples were characterized by optical metallography, chemical analyses, microhardness, pearlite interlamellar spacing measurements and tensile tests. The metallographic examination did not show any important change in the graphite morphology. The pearlite interlamellar spacing and microhardness were computed as distribution curves from at least thirty measurements in the materials matrices. These curves showed a decrease in pearlite interlamellar spacing and an increase in pearlite microhardness for the three materials in which the pearlite refining strategies were applied as compared to the reference material. The mean pearlite interlamellar spacings were reduced from 0.10 mu m for the reference material to 0.07 mu m, 0.08 mu m and 0.08 mu m for the materials in which strategies 1, 2 and 3 were applied, respectively. The UTS increased from 378 MPa for the reference material to 423 MPa, 418 MPa and 390 MPa for the strategies 1, 2 and 3, respectively.
机译:珠光体精炼是增加铸铁强度的最常用方法之一,并且可以使用不同的策略来实现。在这项工作中,将3种获得珠光体精炼的策略应用于在涂层钢模中离心的给定的低型灰铸铁:(1)增加Cu,Mo和Cr含量; (2)加强金属模具的冷却速率; (3)用强制空气冷却铸铁。策略2和3旨在提高共析反应期间的冷却速率。然后,进行了四个实验:参考实验和其他三个在上述策略上施用。材料样品的特征在于光学金相,化学分析,显微硬度,珠光体层间距测量和拉伸试验。金相检查没有显示出石墨形态的任何重要变化。将珠光体层间距和显微硬度作为材料矩阵中的至少三十次测量计算为分布曲线。这些曲线显示出珠光体层间距和珠光体显微硬度增加的三种材料的增加,其中珠光体精炼策略与参考材料相比。对于应用策略1,2和3的材料,平均珠光体层间距为0.07μm,0.08μm和0.08μm,分别为0.07μm,0.08μm和0.08μm。 UTS分别从378MPa增加到423MPa,418MPa和390MPa的策略1,2和3。

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