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Influence of matrix structure on the fatigue properties of an alloyed ductile iron

机译:基体结构对合金球墨铸铁疲劳性能的影响

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Rotary bending fatigue tests were conducted on ductile iron containing 1.25 wt% nickel, 1.03 wt% copper and 0.18 wt% molybdenum with various matrix structures. Several heat treatments were applied to obtain ferritic, pearlitic/ferritic, pearlitic, tempered martensitic, lower and upper ausferritic structures in the matrix of a pearlitic as-cast alloyed ductile iron. The tensile properties (ultimate tensile strength, 0.2% yield strength and percent elongation), the hardness and the microstructures of the matrixes were also investigated in addition to fatigue properties. Fractured surfaces of the fatigue specimens were examined by the scanning electron microscope. The results showed that the lowest hardness, tensile and fatigue properties were obtained for the ferritic structure and the values of these properties seemed to increase with rising pearlite content in the matrix. While the lower ausferritic structure had the highest fatigue strength, the upper ausferritic one showed low fatigue and tensile properties due to the formation of the second reaction during the austempering process.
机译:在含有1.25 wt%镍,1.03 wt%铜和0.18 wt%钼以及各种基质结构的球墨铸铁上进行了旋转弯曲疲劳试验。进行了几种热处理,以在珠光体铸态合金球墨铸铁的基体中获得铁素体,珠光体/铁素体,珠光体,回火马氏体,上下奥氏体组织。除疲劳性能外,还研究了基体的拉伸性能(最终拉伸强度,0.2%屈服强度和延伸率百分比),硬度和微观结构。用扫描电子显微镜检查疲劳试样的断裂表面。结果表明,铁素体结构获得了最低的硬度,拉伸和疲劳性能,并且这些性能的值似乎随着基体中珠光体含量的增加而增加。下奥氏体组织具有最高的疲劳强度,而上奥氏体组织由于在奥氏体回火过程中第二反应的形成而显示出低疲劳和拉伸性能。

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