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Effect of microstructure on fatigue properties of hot-rolled sheet steels

机译:微观结构对热轧板钢疲劳性能的影响

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The influence of tensile strength on fatigue strength and the effect of microstructure on fatigue notch factor were investigated into conventional mild steels, HSLA steels, DP steels and TRIP steels. The grade of studied steels was altered from 440 MPa to 780 MPa. Not only smooth fatigue specimens with side surface ground but also fatigue specimens with a pierced hole were prepared for each of steel sheets. Fatigue tests were conducted in an axial load method. These experiments made it clear that the fatigue limits of smooth specimen increase along the tensile strength approximately independent of microstructure but those of notched specimen do not necessarily increase along the tensile strength. Namely, fatigue limits of DP steels and TRIP steels with notch increase in proportion to tensile strength although those of HSLA steels with notch do not increase.
机译:常规温和钢,HSLA钢,DP钢和跳水钢研究抗拉强度对疲劳强度对疲劳强度的影响及其微观结构对疲劳缺口因子的影响。研究的钢等级从440MPa改变为780 MPa。不仅为每个钢板制备了具有侧面接地的平滑疲劳样品,而且还为每个钢板制备疲劳试样。疲劳试验以轴向载荷法进行。这些实验使得透明的是,沿着抗拉强度沿着大致独立于微观结构的抗拉强度增加的疲劳限制,但是缺口样品的抗拉性试样不一定沿拉伸强度增加。即,DP钢的疲劳极限与凹口与拉伸强度成比例的跳闸钢尽管具有缺口的HSLA钢的钢管不会增加。

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