首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Antimony and Cerium on the Formation of Chunky Graphite during Solidification of Heavy-Section Castings of Near-Eutectic Spheroidal Graphite Irons
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Effect of Antimony and Cerium on the Formation of Chunky Graphite during Solidification of Heavy-Section Castings of Near-Eutectic Spheroidal Graphite Irons

机译:锑和铈对近共晶球墨铸铁大口径铸件凝固过程中块状石墨形成的影响

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摘要

Thermal analysis is applied to the study of the formation of chunky graphite (CHG) in heavy-section castings of spheroidal graphite cast irons. To that aim, near-eutectic melts prepared in one single cast house were poured into molds containing up to four large cubic blocks 30 cm in size. Four melts have been prepared and cast that had a cerium content varying in relation with the spheroidizing alloy used. Postinoculation or addition of antimony was achieved by fixing appropriate amounts of materials in the gating system of each block. Cooling curves recorded in the center of the blocks show that solidification proceeds in three steps: a short primary deposition of graphite followed by an initial and then a bulk eutectic reaction. Formation of CHG could be unambiguously associated with increased recalescence during the bulk eutectic reaction. While antimony strongly decreases the amount of CHG, it appears that the ratio of the contents in antimony and cerium should be higher than 0.8 in order to avoid this graphite degeneracy.
机译:热分析被用于研究球墨铸铁重截面铸件中块状石墨(CHG)的形成。为此,将在一个铸件房中制备的近共熔熔体倒入模具中,该模具最多包含四个尺寸为30 cm的大立方块。已经制备和浇铸了四种熔融金属,它们的铈含量相对于所用的球化合金而变化。通过将适量的材料固定在每个模块的浇口系统中,可以进行接种后或添加锑。块中心记录的冷却曲线表明,固化过程分为三个步骤:短暂的石墨初次沉积,然后是初始的然后是整体的共晶反应。 CHG的形成可以明确地与整体共晶反应过程中增加的重结晶有关。尽管锑强烈地降低了CHG的量,但似乎锑和铈中的含量之比应高于0.8,以避免这种石墨的简并。

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