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Development and Characterization of a New Type of Ductile Iron with a Novel Multi-phase Microstructure

机译:具有新型多相组织的新型球墨铸铁的研制与表征

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摘要

Over the last few years two new types of Ductile Iron (Dl) have been developed based on Austempered Dl (ADI), called Dual Phase ADI and Carbidic ADI (CADI), respectively. In the light of the experience acquired when studying these Dl variants, the authors found motivating the possibility of obtaining a new type of multi-phase Dl (MPDI), combining their main microstructural characteristics. A Dl melt alloyed with 2%Cr, exhibiting free carbides and a pearlitic matrix in its as-cast condition, was used. The upper (U_(CT)) and lower (Lct) critical temperatures of the Fe-C-Si equilibrium diagram region, where ferrite (α), austenite (γ) and graphite (Gr) coexist (called "intercritical interval"), were determined by heat treatment and microstructural analysis on samples previously annealed. Carbides stability was studied, and its dissolution was found to be negligible. It was possible to obtain free or allotriomorphic ferrite and austenite by isothermal aus-tenitizing at temperatures within the intercritical interval, and then transform the remaining austenite into ausferrite after an austempering step. Therefore, multi- phase microstructures composed of graphite nodules, free carbides, free ferrite and ausferrite were obtained. The possibility of obtaining MPDI directly from the as-cast structure was also analyzed, and it was found that very similar microstructures to those previously annealed can be obtained by austenitizing samples at the same temperature range. These results proved that the pearlite → austenite transformation kinetics is rapid, as it took only one hour for the transformation to occur.
机译:在过去的几年中,基于奥氏体化的Dl(ADI)开发了两种新型的球墨铸铁(Dl),分别称为双相ADI和Carbidic ADI(CADI)。根据研究这些Dl变体时获得的经验,作者发现激发了结合其主要微观结构特征获得新型多相Dl(MPDI)的可能性。使用与2%Cr合金化的D1熔体,其在铸造状态下显示出游离碳化物和珠光体基体。 Fe-C-Si平衡图区域的最高(U_(CT))和最低(Lct)临界温度,其中铁素体(α),奥氏体(γ)和石墨(Gr)共存(称为“临界区间”),通过热处理和先前退火过的样品的显微组织分析确定。研究了碳化物的稳定性,发现其溶解度可忽略不计。通过在临界区间内的温度下等温奥氏体化,可以获得游离的或同质的铁素体和奥氏体,然后在回火步骤之后将剩余的奥氏体转变成奥氏体。因此,获得了由石墨结核,游离碳化物,游离铁素体和奥氏体组成的多相微结构。还分析了直接从铸态结构获得MPDI的可能性,并且发现通过在相同温度范围内对样品进行奥氏体化可以获得与先前退火的组织非常相似的组织。这些结果证明,珠光体→奥氏体的转变动力学是快速的,因为仅花费一个小时就发生了转变。

著录项

  • 来源
    《ISIJ international》 |2011年第4期|p.645-650|共6页
  • 作者单位

    Faculty of Engineering. INTEMA. National University of Mar del Plata. CONICET, Av. Juan B. Justo 4302, (B7608FDQ) Mar del Plata, Argentina.;

    Faculty of Engineering. INTEMA. National University of Mar del Plata. CONICET, Av. Juan B. Justo 4302, (B7608FDQ) Mar del Plata, Argentina.;

    Faculty of Engineering. INTEMA. National University of Mar del Plata. CONICET, Av. Juan B. Justo 4302, (B7608FDQ) Mar del Plata, Argentina.;

    Faculty of Engineering. INTEMA. National University of Mar del Plata. CONICET, Av. Juan B. Justo 4302, (B7608FDQ) Mar del Plata, Argentina.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ductile iron; ADI; multi-phase microstructure; ausferrite; ferrite; carbides;

    机译:球墨铸铁ADI;多相组织奥氏体铁氧体碳化物;
  • 入库时间 2022-08-18 00:02:57

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