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Study of dimensional change of high-silicon ductile iron with ADI and Dual-Phase-ADI microstructures starting from different as-cast structures

机译:基于不同铸造结构的ADI和双相 - ADI微结构的高硅延性铁尺寸变化研究

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In this work the percent dimensional change (DC%) and its dispersion in high silicon Ductile Iron with ADI and Dual-Phase-ADI structures obtained through heat treatment starting from different as-cast microstructures, was studied. Specimens were obtained from three different melts with Si content ranging from 3.1 to 4.2%. Dual-Phase-ADI structures were obtained using special heat treatment, starting from as-cast structures. Regarding dimensional change, DC% in ADI and Dual-Phase-ADI decrease as Si% and the proportion of ferrite phase in as-cast specimens increased. On the other hand, DC% increased with austenitizing temperature and ausferrite content in the final microstructure. A fuzzy model to predict DC% in ADI parts was adapted to include DC% prediction in Dual-Phase-ADI. The fuzzy model allowed to predict the DC% for ADI and Dual-Phase-ADI parts with an root mean square 0.05%.
机译:在这项工作中,研究了通过从不同作为铸造微结构开始的热处理获得的ADI和双相 - ADI结构的高硅延性铁中的尺寸变化(DC%)及其分散。 从3种不同的熔融获得标本,Si含量为3.1-4.2%。 使用特殊热处理获得双相 - ADI结构,从铸造结构开始。 关于尺寸变化,ADI和双相ADI中的DC%随着Si%而降低,铸造标本中的铁氧体相的比例增加。 另一方面,DC%在最终微观结构中随着奥氏体化温度和空心素含量而增加。 在ADI部件中预测DC%的模糊模型适于包括双相ADI中的DC%预测。 模糊模型允许预测ADI和双相ADI部件的DC%,具有均方根均线均值。

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