• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (10): 90-96.

• 论文 • 上一篇    下一篇

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压装轴微动疲劳主裂纹萌生位置的分析

张远彬;鲁连涛;张继旺;邬平波;马纪军;王贵国   

  1. 西南交通大学牵引动力国家重点实验室;中国北车集团唐山轨道客车有限责任公司
  • 发布日期:2013-05-20

Analysis of Fretting Fatigue Crack Initiation Location in Press-fitted Shaft

ZHANG Yuanbin;LU Liantao;ZHANG Jiwang;WU Pingbo;MA Jijun;WANG Guiguo   

  1. Traction Power State Key Laboratory, Southwest Jiaotong University China CNR Tangshan Railway Vehicle Co., Ltd.
  • Published:2013-05-20

摘要: 为研究压装轴微动疲劳主裂纹的萌生位置,进行由锁紧环、压装垫环和压装轴试样组成的过盈配合结构的旋转弯曲加载条件下的微动疲劳试验,观察不同名义弯曲应力对应的试样的主裂纹萌生位置,发现主裂纹位于比张开区更深的接触内部。针对试验加载条件,采用有限元软件ANSYS,进行弹性有限元仿真分析,运用Ruiz法预测不同名义弯曲应力下试样的主裂纹萌生位置,并将Ruiz法的预测结果与疲劳试验的测量结果进行比较。结果表明,随着名义弯曲应力的增加,预测误差大幅度的增加。研究发现,接触边缘处发生的接触面张开现象是引起预测误差的主要原因;基于Ruiz法预测压装轴微动疲劳裂纹萌生位置时,需要考虑在接触边缘处接触面张开区宽度的影响,特别是对于名义弯曲应力与接触压力的比值较大的压装工况。

关键词: 过盈配合, 裂纹萌生, 微动疲劳, 有限元分析

Abstract: In order to investigate the fretting fatigue crack initiation of the press-fitted shaft, the rotary bending fretting fatigue tests are conducted by the press-fitted shaft consisted of locking assembly, pad and the shaft specimen. The crack initiation locations of the specimens under different applying nominal bending stress are observed. It is found that the crack initiation locations are at the internal area of the contact pair, which is deeper than the location of the open region. According to the experiment condition, the elastic finite element analysis is conducted by ANSYS and the crack initiation locations are predicted by Ruiz method. The predicted results by Ruiz method are compared with the experimental results. It shows that the prediction error dramatically increases with the increase of nominal bending stress. It is found that the opened region at the rim of the contact pair has large effect on the accuracy of the prediction by Ruiz method. So it is necessary to consider the effect of open region when predicting the fretting fatigue crack initiation location of press-fitted shaft by Ruiz method, especially when the ratio of the nominal bending stress and the contact press is large.

Key words: Crack initiation location, Finite element analysis, Fretting fatigue, Press-fitted

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