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Effects of Roller Geometry on Contact Pressure and Residual Stress in Crankshaft Fillet Rolling

机译:滚子几何形状对曲轴轧辊滚动中接触压力和残余应力的影响

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In this paper, the effects of roller geometry on contact pressure and residual stress in crankshaft fillet rolling are investigated by a two-dimensional finite element analysis. The fillet rolling process is first introduced to review some characteristics of the rolling tools. A two-dimensional plane strain finite element analysis is then employed to qualitatively investigate the influence of the roller geometry. Computations have been conducted for eight different contact geometries between the primary roller and the secondary roller to investigate the geometry effect on the contact pressure distribution on the edge of the primary roller. Fatigue parameters of the primary rollers are also estimated based on the Findley fatigue theory. Then, computations have been conducted for three different contact geometries between the primary roller and the crankshaft fillet to investigate the geometry effect on the residual stress distribution near the crankshaft fillet. The results suggest that the contact geometry between the two rollers has significant influence on the contact pressure distribution and the maximum contact pressure along the edge of the primary roller and, consequently, the fatigue lives of the primary rollers. The results also suggest that the contact geometry between the primary roller and the crankshaft fillet does not have significant influence on the overall residual stress distribution and, consequently, may not have significant influence on the fatigue performance of crankshaft sections under bending loads. Therefore, an appropriate adjustment of the contact geometry between the two rollers can significantly improve the fatigue lives of the primary rollers without a significant change of the overall residual stress distributions near the crankshaft fillet and, in turn, the fatigue performance of crankshaft sections under bending loads.
机译:本文采用二维有限元分析研究了滚子几何形状对曲轴圆角轧制中的接触压力和残余应力的影响。首先引入圆角轧制工艺以查看轧制工具的一些特性。然后采用二维平面应变有限元分析来定性地研究辊几何形状的影响。在初级辊和次级辊之间进行了八个不同的接触几何形状进行了计算,以研究对初级辊边缘上的接触压力分布的几何效果。基于Findley疲劳理论,还估计了初级辊的疲劳参数。然后,已经在初级辊和曲轴圆角之间进行三个不同的接触几何形状进行计算,以研究对曲轴圆角附近的残余应力分布的几何效应。结果表明,两条辊之间的接触几何形状对初级辊边缘的接触压力分布和最大接触压力产生显着影响,因此,初级辊的疲劳寿命。结果还表明,初级辊和曲轴圆角之间的接触几何形状对整体残留应力分布没有显着影响,因此,对弯曲负荷下的曲轴部分的疲劳性能没有显着影响。因此,两个辊子之间的接触几何形状的适当调整可以显着改善初级辊的疲劳寿命,而无需曲轴圆角附近的整个残余应力分布的显着变化,而且又在弯曲下的曲轴部分的疲劳性能负载。

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