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Microstructural Adjustment of the Degenerated Graphite Layer in Ductile Iron for Targeted Evaluation on the Fatigue Properties

机译:脱岩铸铁中退化石墨层的微观结构调整疲劳性能评价

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摘要

Graphite degeneration is the most prominent microstructural defect in the casting skin of ductile iron. Induced by either sulfur or oxygen contained in the molding material, its occurrence can be observed in a large range of iron castings, having substantial negative influences on the mechanical properties, especially fatigue resistance. Previous investigations predominately focused on the influence of the degenerated graphite layer, while accompanying changes of the iron matrix were neglected. The superposition of these effects hinders the evaluation of casting skin defects in state-of-the-art design of ductile iron components. The presented solution utilizes an experimental procedure, which enables the production of specimens with specific, individual microstructural configurations in the casting skin. This approach is based on the application of a modified sand core coating. By adding sulfurizing additives to the coating and adjusting its binder content and viscosity, a predominately homogeneous degenerated layer of 0.5 mm thickness was obtained. Using specific heat treatment steps assured a fully ferritic or pearlitic iron matrix, isolating the degenerated layer as the main microstructural defect. Fatigue testing of these specimens will further enable the numerical evaluation of the fatigue resistance in dependence of the casting skin microstructure.
机译:石墨变性是球墨铸铁铸造皮肤上最突出的微观结构缺陷。由模塑材料中含有的硫或氧气引起的,在大范围的铁铸件中可以观察到其发生,对机械性能具有很大的负面影响,尤其是疲劳性。以前的研究主要集中在退化石墨层的影响上,同时忽略了铁基质的变化。这些效果的叠加阻碍了延展性铸铁组件的最先进设计中铸造皮肤缺陷的评价。呈现的解决方案利用实验程序,该实验程序使得能够在铸造皮肤中产生具有特异性单个微观结构配置的标本。这种方法基于改进的砂芯涂层的应用。通过将硫化添加剂添加到涂层中并调节其粘合剂含量和粘度,得到主要的均匀退化层0.5mm厚的厚度。使用特定的热处理步骤确保了完全铁素体或珠光体铁基质,将退化层分离为主要的微观结构缺陷。这些样本的疲劳测试将进一步使疲劳性抗疲劳性的数值评估依赖于铸造皮肤微观结构。

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