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Experiment and Theoretical Investigation on Fatigue Life Prediction of Fracturing Pumpheads Based on a Novel Stress-Field Intensity Approach
Authors:Yun Zeng  Meiqiu Li  Han Wu  Ning Li  Yang Zhou
Affiliation:1.School of Mechanical Engineering, Yangtze University, Jingzhou 434023, China; (Y.Z.); (M.L.); (N.L.);2.CNOOC Ener Tech-Drilling & Production Co., Shanghai 200444, China;3.School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200444, China
Abstract:Fracturing pumpheads are typical pressure vessels that experience frequent fatigue failure under the effect of notches in their cross-bore. To enhance the fatigue life of fracturing pumpheads, the study of the notch effect is indispensable and important to establish a reliable mathematical model to predict their fatigue life. In the present paper, two novel fatigue life prediction models are proposed for notched specimens. In these models, two new geometric fatigue failure regions are defined to improve the weight function. Finally, the elaborated novel stress-field intensity approach was applied to three different types of notched specimens. Experiment results indicate that the new SFI approach achieves 47.82%, 39.48%, and 31.85% higher prediction accuracy than the traditional SFI approach, respectively. It was found that the modified SFI approach provided better predictions than the traditional SFI approach and the TCD method. The II-th novel SFI approach had the highest accuracy, and the I-th novel SFI approach was more suitable for sharply notched specimens.
Keywords:fatigue life prediction   notched specimen   S-N curves   fatigue fracture region   stress-field intensity
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