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首页> 外文期刊>Journal of Tribology >Dynamic Analysis of Cage Stress in Tapered Roller Bearings Using Component-Mode-Synthesis Method
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Dynamic Analysis of Cage Stress in Tapered Roller Bearings Using Component-Mode-Synthesis Method

机译:基于分量模态综合法的圆锥滚子轴承保持架应力动态分析

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摘要

In order to investigate cage stress in tapered roller bearings, a dynamic analysis tool considering both the six degrees of freedom of motion of the rollers and cage and the elastic deformation of the cage was developed. Cage elastic deformation is equipped using a component-mode-synthesis (CMS) method. Contact forces on the elastically deforming surfaces of the cage pocket are calculated at all node points of finite-elements on it. The location and pattern of the boundary points required for the component-mode-synthesis method were examined by comparing cage stresses in a static condition of pocket forces and constraints calculated by using the finite-element and the CMS methods. These results indicated that one boundary point lying at the center on each bar is appropriate for the effective dynamic analysis model focusing on the cage stress, especially at the pocket corners of the cages, which are actually broken. A behavior measurement of a poly amide cage in a tapered roller bearing was conducted for validating the analysis model. It was confirmed in both the experiment and analysis that the cage whirled under a large axial load condition and the cage center oscillated in a small amplitude under a small axial load condition. In the analysis, the authors discussed the four models including elastic bodies having a normal eigenmode of 0, 8 or 22, and rigid-body. There were small differences among the cage center loci of the four models. These two cages having normal eigenmodes of 0 and rigid-body whirled with imperceptible fluctuations. At least approximately 8 normal eigenmodes of cages should be introduced to conduct a more accurate dynamic analysis although the effect of the number of normal eigenmodes on the stresses at the pocket corners was insignificant. From the above, it was concluded to be appropriate to introduce one boundary point lying at the center on each pocket bar of cages and approximately 8 normal eigenmodes to effectively introduce the cage elastic deformations into a dynamic analysis model.
机译:为了研究圆锥滚子轴承的保持架应力,开发了同时考虑滚子和保持架的六个运动自由度以及保持架的弹性变形的动力学分析工具。笼式弹性变形是使用组件模式合成(CMS)方法进行的。在笼形袋的弹性变形表面上的接触力是在其上有限元的所有节点处计算的。通过比较在有限力和采用有限元法和CMS方法计算的约束的静态条件下的保持架应力,检查了组件模式合成方法所需的边界点的位置和模式。这些结果表明,位于每根钢筋中心的一个边界点适用于关注笼应力的有效动态分析模型,尤其是在实际上破裂的笼的袋角处。为了验证分析模型,对圆锥滚子轴承中的聚酰胺保持架进行了性能测量。在实验和分析中都证实了,在大轴向载荷条件下,保持架旋转,而在小轴向载荷条件下,保持架中心以小幅度振荡。在分析中,作者讨论了四个模型,包括具有0、8或22的本征模态的弹性体和刚体。四个模型的笼子中心基因座之间差异很小。这两个笼子的本征模态为0,并且刚体以不明显的波动旋转。至少应引入大约8个笼子的正常本征模式,以进行更准确的动态分析,尽管正常本征模式的数量对袋角处的应力的影响不明显。综上所述,得出结论,在笼的每个口袋条上引入一个位于中心点的边界点和大约8个正常本征模,以有效地将笼的弹性变形引入动力学分析模型是适当的。

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