Research on fatigue life prediction model for 2A70-T6 aluminum alloy at different strain ratios
International Journal of Structural Integrity
ISSN: 1757-9864
Article publication date: 17 October 2023
Issue publication date: 14 November 2023
Abstract
Purpose
In practical engineering, oil filters often work under asymmetric cyclic loading. In order to improve the prediction accuracy of fatigue life of the oil filters under asymmetric cyclic loading, the effect of strain ratio and low cycle fatigue plastic deformation on fatigue life need to be considered. This paper aims to discuss the aforementioned objective.
Design/methodology/approach
First, strain-controlled fatigue tests with strain ratios of 0, 0.5 and −1 were carried out on the oil filter material 2A70-T6 aluminum alloy, and the test data were used to obtain strain fatigue life curves at three strain ratios. Then, based on the idea of the constant life curve method, the average value of the ratio of the strain amplitude corresponding to different strain ratios under the same partial life was defined as the strain ratio factor. Finally, the elastic-plastic factor was modified by the strain ratio factor, and a new fatigue life prediction model considering the effect of strain ratio was proposed.
Findings
The proposed model was validated, respectively, by fatigue test data of 2A70-T6 aluminum alloy, 2124-T851 aluminum alloy and oil filter and the results of the proposed model were compared with the Coffin–Manson equation, Morrow model and Smith–Watson–Topper (SWT) model, showing that the proposed model had higher applicability and accuracy.
Originality/value
In this work, a strain ratio factor is established based on the idea of the constant life curve method, and the strain ratio factor is used to modify the introduced elastic-plastic factor, and then a new fatigue life prediction model considering the influence of strain ratio and low cycle fatigue plastic deformation on material fatigue damage accumulation is proposed. The results show that the prediction results of the proposed model are in good agreement with the experimental data, and the proposed model has good fatigue life prediction ability considering the influence of strain ratio and lays a foundation for the fatigue life prediction of the oil filter.
Keywords
Acknowledgements
Funding: This work was supported by the National Natural Science Foundation of China (Grant/Award Number: 51605212).
Citation
Wei, Y., Li, Y., Liu, J., Wang, G., Guo, Y. and Pan, X. (2023), "Research on fatigue life prediction model for 2A70-T6 aluminum alloy at different strain ratios", International Journal of Structural Integrity, Vol. 14 No. 6, pp. 981-999. https://doi.org/10.1108/IJSI-05-2023-0044
Publisher
:Emerald Publishing Limited
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