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Fretting Fatigue with Cylindrical-On-Flat Contact: Crack Nucleation, Crack Path and Fatigue Life

机译:圆柱面接触微动疲劳:裂纹形核,裂纹路径和疲劳寿命

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Fretting fatigue experiments and finite element analysis were carried out to investigate the influence of cylindrical-on-flat contact on crack nucleation, crack path and fatigue life of medium-carbon steel. The location of crack nucleation was predicted using the maximum shear stress range criterion and the maximum relative slip amplitude criterion. The prediction using the maximum relative slip amplitude criterion gave the better agreement with the experimental result, and should be used for the prediction of the location of crack nucleation. Crack openings under compressive bulk stresses were found in the fretting fatigues with flat-on-flat contact and cylindrical-on-flat contacts, i.e., fretting-contact-induced crack openings. The crack opening stress of specimen with flat-on-flat contact was lower than those of specimens with cylindrical-on-flat contacts, while that of specimen with 60-mm radius contact pad was lower than that of specimen with 15-mm radius contact pad. The fretting fatigue lives were estimated by integrating the fatigue crack growth curve from an initial propagating crack length to a critical crack length. The predictions of fretting fatigue life with consideration of crack opening were in good agreement with the experimental results.
机译:进行了微动疲劳试验和有限元分析,以研究圆柱-平面接触对中碳钢的裂纹成核,裂纹路径和疲劳寿命的影响。使用最大剪切应力范围标准和最大相对滑动幅度标准来预测裂纹成核的位置。使用最大相对滑移振幅准则的预测与实验结果具有更好的一致性,应用于预测裂纹成核的位置。在平整接触和圆柱对平接触的微动疲劳中,即在微动接触引起的裂纹开口中,发现了在压缩大应力下的裂纹开口。平面接触的试样的开裂应力低于圆柱接触的试样,而半径为60mm的接触垫的试样的开裂应力低于半径为15mm的试样。垫。通过将疲劳裂纹扩展曲线(从初始扩展裂纹长度到临界裂纹长度)进行积分,可以估算微动疲劳寿命。考虑开裂的微动疲劳寿命预测与实验结果吻合良好。

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