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首页> 外文期刊>日本機械学会論文集. A編 >Fracture Mechanism of Ferritic Ductile Cast Iron in Extremely Low Cycle Fatigue
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Fracture Mechanism of Ferritic Ductile Cast Iron in Extremely Low Cycle Fatigue

机译:铁素体球墨铸铁在极低周疲劳中的断裂机理

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摘要

Low cycle fatigue tests were carried out under push pull loading conditions using Ferritic Ductile Cast Iron (FDI). In order to clarify the fatigue fracture mechanism of FDI in an Extremely Low Cycle Fatigue (ELCF) regime, an observation of the longitudinal sections of the partially fatigued specimens were performed. The fatigue process in the ELCF regime can be classified into three stages f (a ) Generation of micro voids, caused by the debonding of the graphite-matrix interface. (b ) Growth of the micro voids, perpendicular to the loading axis. (c ) Formation of an internal macro crack, due to the coalescence of micro voids inside the material. Two types of micro- void coalescence processes have been observed. The first, due to the growth of internal micro-cracks and the second, due to internal necking of the matrix. The fatigue process of the FDI in the ELCF regime was accompanied by the static fracture mechanism.
机译:使用铁素体球墨铸铁(FDI)在推拉载荷条件下进行了低周疲劳测试。为了阐明FDI在极低循环疲劳(ELCF)情况下的疲劳断裂机理,对部分疲劳试样的纵向截面进行了观察。 ELCF状态下的疲劳过程可分为三个阶段f(a)产生微孔洞,这是由于石墨-基体界面脱粘引起的。 (b)垂直于加载轴的微空隙的生长。 (c)由于材料内部的微孔的聚结而形成内部宏观裂纹。已经观察到两种类型的微空隙聚结过程。第一个是由于内部微裂纹的增长,第二个是由于基质的内部颈缩。 FDI在ELCF模式下的疲劳过程伴随着静态断裂机制。

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