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Effects of boron addition and austempering time on microstructure, hardness and tensile properties of ductile irons

机译:硼添加和回火时间对球墨铸铁组织,硬度和拉伸性能的影响

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The present work analyzes the effect of boron addition to an Austempered Ductile Iron, in amounts from zero to 120 ppm. It has been found that boron has a strong effect on the equivalent carbon content, resulting in an increase on the precipitated graphite volume and a decrease in the dissolved carbon content in the matrix. This in turn, increases the ferrite volume fraction in the as-cast conditions from 0.24 in the base alloy to 0.78 for the iron with 120 ppm of boron. Furthermore, a decrease in the no-dularity from 100% in the base alloy to 83% with 120 ppm of boron has been observed. During austempering, the transformation to ausferrite was faster and lower volumes of martensite and unstable austenite were detected when boron increased; this promoted lower hardness values, 239 HV for the base iron and 189 HV for the 120 ppm boron alloy. The increase in hardness and strength, typical for the start of bainite formation, were not observed in the boron added irons, but just in the base alloy. Under this basis, it is assumed that at least the addition of 60 ppm of boron extended the optimal processing window. The higher values of strength and ductility were obtained for the alloy with 60 ppm of boron; these results are discussed in terms of the graphitizing effect of boron in these irons and the reduced amount of carbon dissolved in austenite.
机译:本工作分析了奥氏体球墨铸铁中硼的添加量(从零到120 ppm)的影响。已经发现硼对当量碳含量具有强烈影响,导致沉淀的石墨体积的增加和基质中溶解碳含量的降低。这又将铸态条件下的铁素体体积分数从基础合金中的0.24增加到含120 ppm硼的铁的0.78。此外,已经观察到在120ppm的硼下,非球面度从基础合金中的100%降低到83%。在奥氏体回火过程中,当硼增加时,向奥氏体的转变更快,并且检出了较低体积的马氏体和不稳定的奥氏体。这提高了较低的硬度值,即基础铁为239 HV,120 ppm硼合金为189 HV。在添加硼的铁中未观察到贝氏体形成开始时典型的硬度和强度的增加,而仅在基础合金中观察到。在此基础上,假定至少添加60 ppm的硼扩展了最佳处理窗口。硼含量为60 ppm的合金具有较高的强度和延展性值。根据硼在这些铁中的石墨化作用以及溶解在奥氏体中的碳减少量来讨论这些结果。

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