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Effects of Interactions between Nodule Count of Spheroidal Graphite and Retained Austenite on Tensile Properties of Austempered Ductile Cast Iron Heat Treated from (alpha plus gamma) Range

机译:球形石墨结节计数与保留奥氏体之间相互作用对(Alpha Plus Gamma)范围处理的常见型球墨铸铁热抗拉性能

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摘要

ADI (austempered ductile cast iron) has outstanding balance in strength and ductility, as the retained austenite improves ductility through the strain-induced transformation. In our previous report, the formation and mechanical properties of fine ferrite, bainitic ferrite, and retained austenite on the preheat-treated fine pearlite structure were investigated. However, the investigation into the effect of spheroidal graphite was insufficient. Therefore, the purpose of this study is to clear on the effect that the interaction between the nodule count of spheroidal graphite and retained austenite has on mechanical properties. Two methods were used for changing the nodule count of spheroidal graphite. The first method is that the nodule count is adjusted by changing the solidification speed in which crystallization of the spheroidal graphite occurs during casting. The second method is that the amount of added carbon is reduced to decrease the amount of spheroidal graphite being crystallized, which reduces the nodule count.
机译:ADI(奥斯特型球墨铸铁)在强度和延展性中具有出色的平衡,因为保留的奥氏体通过应变诱导的转化改善了延展性。在我们之前的报告中,研究了精细铁氧体,贝氏体铁氧体和保留奥氏体的形成和机械性能,对预热处理的细珠光体结构进行了研究。然而,对球形石墨的影响的调查不足。因此,本研究的目的是清楚地清楚的是,球形石墨结节计数与保留奥氏体之间的相互作用对机械性能。使用两种方法来改变球形石墨的结节计数。第一种方法是通过改变铸造期间发生球形石墨的结晶的凝固速度来调节结节计数。第二种方法是减少添加的碳的量以降低结晶的球形石墨的量,这减少了结节计数。

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