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2020 | OriginalPaper | Chapter

Effect of Loading Conditions in Fretting Fatigue on Wear Characteristics

Authors : S. Wang, M. Abdel Wahab

Published in: Proceedings of the 13th International Conference on Damage Assessment of Structures

Publisher: Springer Singapore

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Abstract

Fretting is a phenomenon that happens when there is a small slip amplitude between two contact surfaces. Fretting can cause damages like fretting wear, fretting fatigue, and fretting corrosion. These damages can affect each other in the real case, which is ignored in most research. In this paper, the effect of loading conditions such as axial stress, tangential stress and normal load in fretting fatigue on wear characteristics is analyzed in partial slip regime. The finite element fretting model of pad-on-specimen is designed to analyze the difference in wear characteristics between fretting fatigue models with different loading conditions. The results show that by increasing axial stress, the wear depth and wear width increase near the right contact edge and decrease near the right contact edge, while with the increment of the tangential load and normal load, the wear depth and width increase near both contact edges. Moreover, by increasing the normal load, the point of maximum depth moves closer to the contact center.

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Literature
1.
2.
go back to reference Ovcharenko, A., Etsion, I.: Junction growth and energy dissipation at the very early stage of elastic-plastic spherical contact fretting. J. Tribol. 131, 031602 (2009)CrossRef Ovcharenko, A., Etsion, I.: Junction growth and energy dissipation at the very early stage of elastic-plastic spherical contact fretting. J. Tribol. 131, 031602 (2009)CrossRef
3.
go back to reference Fouvry, S., Kapsa, P., Vincent, L.: Quantification of fretting damage. Wear 200, 186–205 (1996)CrossRef Fouvry, S., Kapsa, P., Vincent, L.: Quantification of fretting damage. Wear 200, 186–205 (1996)CrossRef
4.
go back to reference Yan, S., Zhang, D., Shirong, G.: Effect of fretting amplitudes on fretting wear behavior of steel wires in coal mines. Min. Sci. Technol. (China) 20, 803–808 (2010) Yan, S., Zhang, D., Shirong, G.: Effect of fretting amplitudes on fretting wear behavior of steel wires in coal mines. Min. Sci. Technol. (China) 20, 803–808 (2010)
5.
go back to reference Li, J., Lu, Y.: Effects of displacement amplitude on fretting wear behaviors and mechanism of Inconel 600 alloy. Wear 304, 223–230 (2013)CrossRef Li, J., Lu, Y.: Effects of displacement amplitude on fretting wear behaviors and mechanism of Inconel 600 alloy. Wear 304, 223–230 (2013)CrossRef
6.
go back to reference Leonard, B.D., Ghosh, A., Sadeghi, F., Shinde, S., Mittelbach, M.: Third body modeling in fretting using the combined finite-discrete element method. Int. J. Solids Struct. 51, 1375–1389 (2014)CrossRef Leonard, B.D., Ghosh, A., Sadeghi, F., Shinde, S., Mittelbach, M.: Third body modeling in fretting using the combined finite-discrete element method. Int. J. Solids Struct. 51, 1375–1389 (2014)CrossRef
7.
go back to reference Leonard, B.D., Patil, P., Slack, T.S., Sadeghi, F., Shinde, S., Mittelbach, M.: Fretting wear modeling of coated and uncoated surfaces using the combined finite-discrete element method. J. Tribol. 133, 021601 (2011)CrossRef Leonard, B.D., Patil, P., Slack, T.S., Sadeghi, F., Shinde, S., Mittelbach, M.: Fretting wear modeling of coated and uncoated surfaces using the combined finite-discrete element method. J. Tribol. 133, 021601 (2011)CrossRef
8.
go back to reference McColl, I., Ding, J., Leen, S.: Finite element simulation and experimental validation of fretting wear. Wear 256, 1114–1127 (2004)CrossRef McColl, I., Ding, J., Leen, S.: Finite element simulation and experimental validation of fretting wear. Wear 256, 1114–1127 (2004)CrossRef
9.
go back to reference Pereira, K., Yue, T., Wahab, M.A.: Multiscale analysis of the effect of roughness on fretting wear. Tribol. Int. 110, 222–231 (2017)CrossRef Pereira, K., Yue, T., Wahab, M.A.: Multiscale analysis of the effect of roughness on fretting wear. Tribol. Int. 110, 222–231 (2017)CrossRef
10.
go back to reference Yue, T., Wahab, M.A.: A numerical study on the effect of debris layer on fretting wear. Materials 9, 597 (2016)CrossRef Yue, T., Wahab, M.A.: A numerical study on the effect of debris layer on fretting wear. Materials 9, 597 (2016)CrossRef
11.
go back to reference Yue, T., Wahab, M.A.: Finite element analysis of fretting wear under variable coefficient of friction and different contact regimes. Tribol. Int. 107, 274–282 (2017)CrossRef Yue, T., Wahab, M.A.: Finite element analysis of fretting wear under variable coefficient of friction and different contact regimes. Tribol. Int. 107, 274–282 (2017)CrossRef
12.
go back to reference Bhatti, N.A., Pereira, K., Wahab, M.A.: Effect of stress gradient and quadrant averaging on fretting fatigue crack initiation angle and life. Tribol. Int. 131, 212–221 (2019)CrossRef Bhatti, N.A., Pereira, K., Wahab, M.A.: Effect of stress gradient and quadrant averaging on fretting fatigue crack initiation angle and life. Tribol. Int. 131, 212–221 (2019)CrossRef
13.
go back to reference Bhatti, N.A., Wahab, M.A.: Fretting fatigue damage nucleation under out of phase loading using a continuum damage model for non-proportional loading. Tribol. Int. 121, 204–213 (2018)CrossRef Bhatti, N.A., Wahab, M.A.: Fretting fatigue damage nucleation under out of phase loading using a continuum damage model for non-proportional loading. Tribol. Int. 121, 204–213 (2018)CrossRef
14.
go back to reference Bhatti, N.A., Wahab, M.A.: Fretting fatigue crack nucleation: a review. Tribol. Int. 121, 121–138 (2018)CrossRef Bhatti, N.A., Wahab, M.A.: Fretting fatigue crack nucleation: a review. Tribol. Int. 121, 121–138 (2018)CrossRef
15.
go back to reference Hojjati-Talemi, R., Wahab, M.A.: Fretting fatigue crack initiation lifetime predictor tool: Using damage mechanics approach. Tribol. Int. 60, 176–186 (2013)CrossRef Hojjati-Talemi, R., Wahab, M.A.: Fretting fatigue crack initiation lifetime predictor tool: Using damage mechanics approach. Tribol. Int. 60, 176–186 (2013)CrossRef
16.
go back to reference Hojjati-Talemi, R., Wahab, M.A., De Pauw, J., De Baets, P.: Prediction of fretting fatigue crack initiation and propagation lifetime for cylindrical contact configuration. Tribol. Int. 76, 73–91 (2014)CrossRef Hojjati-Talemi, R., Wahab, M.A., De Pauw, J., De Baets, P.: Prediction of fretting fatigue crack initiation and propagation lifetime for cylindrical contact configuration. Tribol. Int. 76, 73–91 (2014)CrossRef
17.
go back to reference Ding, J., Leen, S., Williams, E., Shipway, P.: Finite element simulation of fretting wear-fatigue interaction in spline couplings. Tribol. Mater. Surf. Interfaces 2, 10–24 (2008)CrossRef Ding, J., Leen, S., Williams, E., Shipway, P.: Finite element simulation of fretting wear-fatigue interaction in spline couplings. Tribol. Mater. Surf. Interfaces 2, 10–24 (2008)CrossRef
18.
go back to reference Ding, J., Houghton, D., Williams, E., Leen, S.: Simple parameters to predict effect of surface damage on fretting fatigue. Int. J. Fatigue 33, 332–342 (2011)CrossRef Ding, J., Houghton, D., Williams, E., Leen, S.: Simple parameters to predict effect of surface damage on fretting fatigue. Int. J. Fatigue 33, 332–342 (2011)CrossRef
19.
go back to reference Zhang, Y., Lu, L., Zou, L., Zeng, D., Zhang, J.: Finite element simulation of the influence of fretting wear on fretting crack initiation in press-fitted shaft under rotating bending. Wear 400, 177–183 (2018)CrossRef Zhang, Y., Lu, L., Zou, L., Zeng, D., Zhang, J.: Finite element simulation of the influence of fretting wear on fretting crack initiation in press-fitted shaft under rotating bending. Wear 400, 177–183 (2018)CrossRef
20.
go back to reference Shen, F., Hu, W., Meng, Q.: A damage mechanics approach to fretting fatigue life prediction with consideration of elastic–plastic damage model and wear. Tribol. Int. 82, 176–190 (2015)CrossRef Shen, F., Hu, W., Meng, Q.: A damage mechanics approach to fretting fatigue life prediction with consideration of elastic–plastic damage model and wear. Tribol. Int. 82, 176–190 (2015)CrossRef
21.
go back to reference Basseville, S., Cailletaud, G.: An evaluation of the competition between wear and crack initiation in fretting conditions for Ti–6Al–4V alloy. Wear 328, 443–455 (2015)CrossRef Basseville, S., Cailletaud, G.: An evaluation of the competition between wear and crack initiation in fretting conditions for Ti–6Al–4V alloy. Wear 328, 443–455 (2015)CrossRef
22.
go back to reference Dang-Van, K.: Macro-micro approach in high-cycle multiaxial fatigue. Advances in multiaxial fatigue, ASTM International (1993)CrossRef Dang-Van, K.: Macro-micro approach in high-cycle multiaxial fatigue. Advances in multiaxial fatigue, ASTM International (1993)CrossRef
23.
go back to reference Smith, K.N.: A stress-strain function for the fatigue of metals. J. Mater. 5, 767–778 (1970) Smith, K.N.: A stress-strain function for the fatigue of metals. J. Mater. 5, 767–778 (1970)
24.
go back to reference Kumar, D., Biswas, R., Poh, L.H., Wahab, M.A.: Fretting fatigue stress analysis in heterogeneous material using direct numerical simulations in solid mechanics. Tribol. Int. 109, 124–132 (2017)CrossRef Kumar, D., Biswas, R., Poh, L.H., Wahab, M.A.: Fretting fatigue stress analysis in heterogeneous material using direct numerical simulations in solid mechanics. Tribol. Int. 109, 124–132 (2017)CrossRef
25.
go back to reference Paulin, C., Fouvry, S., Meunier, C.J.W.: Finite element modelling of fretting wear surface evolution: application to a Ti–6A1–4V contact. 264, 26–36 (2008) Paulin, C., Fouvry, S., Meunier, C.J.W.: Finite element modelling of fretting wear surface evolution: application to a Ti–6A1–4V contact. 264, 26–36 (2008)
Metadata
Title
Effect of Loading Conditions in Fretting Fatigue on Wear Characteristics
Authors
S. Wang
M. Abdel Wahab
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-8331-1_50

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