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首页> 外文期刊>鋳造工学 >Influences of Matrix Structure on Notch Effects in Tensile and Fatigue Characteristics of Spheroidal Graphite Cast Iron
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Influences of Matrix Structure on Notch Effects in Tensile and Fatigue Characteristics of Spheroidal Graphite Cast Iron

机译:基质结构对球墨铸铁拉伸和疲劳特性缺口效应的影响

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摘要

The influences of the matrix structure on the notch effect in tensile and rotating-bending fatigue characteristics were investigated by using four kinds of spheroidal graphite (SG) cast iron samples whose matrix structures are ferritic, pearlitic, upper bainitic and lower bainitic. While the stress concentration factor (#alpha#) was smaller than 2.3, the tensile strength of notched specimens was larger than that of smooth specimens regardless of the matrix structure. This is considered to be due to the plastic constraint effect caused by triaxial stress. All the samples showed that a notched specimen with a larger a resulted in a smaller in fatigue strength than a smooth specimen in all the a ranges examined. A larger decrement in the fatigue strength of a specimen with a larger a is considered mainly due to an earlier occurrence of cracks. The notch effect in the tensile and fatigue strength of SG iron is affected largely by its matrix structure.
机译:通过使用四种铁素体,珠光体,上贝氏体和下贝氏体的球墨铸铁样品,研究了基体结构对缺口效应对拉伸和旋转弯曲疲劳特性的影响。尽管应力集中系数(#alpha#)小于2.3,但无论基体结构如何,缺口试样的拉伸强度均大于光滑试样的拉伸强度。认为这是由于三轴应力引起的塑性约束效应。所有样品均显示,在所有检查的a范围内,缺口样品的疲劳强度均比光滑样品的疲劳强度小。认为a较大的试样的疲劳强度的减小较大,这主要是由于裂纹的产生较早。 SG铁的抗拉强度和疲劳强度的缺口效应在很大程度上受其基体结构影响。

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