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Research Article

Fretting wear characteristics of 60Si2MnA steel for high-speed railway rail fastener clips

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Pages 327-345 | Received 25 Jun 2022, Accepted 28 Dec 2022, Published online: 03 Jan 2023

References

  • Yuan X, Li G, Zhang X, et al. An experimental investigation on fretting wear behavior of copper - magnesium alloy. Wear. 2020;462:203497.
  • Zou L, Zeng D, Li Y, et al. Experimental and numerical study on fretting wear and fatigue of full-scale railway axles. Railw Eng Sci. 2020;28(4):365–381. DOI:10.1007/s40534-020-00224-9
  • Kowalski S. Fretting wear in selected elements of rail vehicles. Tehnicki Vjesnik-Technical Gazette. 2018;25:481–486.
  • Zou L, Zeng D, Wang J, et al. Effect of plastic deformation and fretting wear on the fretting fatigue of scaled railway axles. Int J Fatigue. 2020;132:105371.
  • Li Q, Dai B, Zhu Z, et al. Improved indirect measurement of the dynamic stiffness of a rail fastener and its dependence on load and frequency. Constr Build Mater. 2021;304:124588.
  • Yuan X, Zhu S, Zhai W. Dynamic performance evaluation of rail fastening system based on a refined vehicle-track coupled dynamics model. Veh Syst Dyn. 2022;60(8):2564–2586.
  • Wu Z, Ma W, Xiao H, et al. Study on fatigue life of ballastless track fastener springs based on a fatigue test. Int J Struct Integr. 2020;11(6):737–750. DOI:10.1108/IJSI-11-2019-0120
  • Xiang J, Yuan C, Yu C, et al. Analysis of elastic bar fracture causes of fasteners in ballastless track of high-speed railway. J Railw Eng Soc. 2019;16(7):1605–1613.
  • Wu J, Wang S, Wu Z, et al. Experimental study on the fatigue failure of W1-type spring clip. J Exp Mech. 2019;34(6):1003–1009.
  • Park Y, An C, Sim H, et al. Failure analysis of fatigue cracking in the tension clamp of a rail fastening system. Int J Steel Struct. 2019;19(5):1570–1577. DOI:10.1007/s13296-019-00231-5
  • Hasap A, Paitekul P, Noraphaiphipaksa N, et al. Influence of toe load on the fatigue resistance of elastic rail clips. Proc Inst Mech Eng F J Rail Rapid Transit. 2018;232(4):1078–1087. DOI:10.1177/0954409717707834
  • Gao X, Wang A, Liu L, et al. Analysis of failure mechanism of W1-type fastening clip in high speed railway and structure study of damping composite. Eng Fail Anal. 2020;118:104848.
  • Liu Y, Jiang X, Li Q, et al. Fatigue life prediction and evaluation of the W300-1 fastening clip. J Tongji Univ Nat. 2021;49(8):1152–1161.
  • Wu Z, Ning X, Zhao P Analysis of fretting wear of type II fastener elastic bar. In: 2nd international conference on civil engineering, architecture and building materials 2012 (CEABM 2012). Yantai; May 25-272012, p. 1469–1473.
  • Li A, Hu M Microstructure and mechanical properties of 60si2mn steel after austenite inverse phase transformation by sub-temperature quenching. In: International conference on chemical, material and metallurgical engineering 2011 (ICCMME 2011). Beihai; Dec 23-252011, p. 228–232.
  • Tang H, Wang Y, Wu T, et al. Characteristics analysis of inclusion of 60si2mn-Cr spring steel via experiments and thermodynamic calculations. Ironmak Steelmak. 2017;44(5):377–388. DOI:10.1080/03019233.2016.1212563
  • Li Y, Lu Y, Wang C, et al. Phase stability of residual austenite in 60si2mn steels treated by quenching and partitioning. J Iron and Steel Res Int. 2011;18(2):70–74. DOI:10.1016/S1006-706X(11)60026-5
  • Mao W, Zhao A, Yun D, et al. Slurry preparation and rolling of semi-solid 60si2mn spring steel. J Mater Sci Technol. 2003;19(6):613–616.
  • Zhang H, Xia Y, Liu Z, et al. Tribological properties of two kinds of rare earth complexes as lubricant additives for laser cladding coatings. Ind Lubr Tribol. 2012;64(1):23–32. DOI:10.1108/00368791211196862
  • Okamura Y, Suzuki D, Ikoma K, et al. Effects of segment-structured DLC film on the fretting wear of railway axle journal bearings. Mech Eng J. 2019;6(1):18–00446. DOI:10.1299/mej.18-00446
  • Zou L, Zeng D, Li Y, et al. Experimental and numerical study on fretting wear and fatigue of full-scale railway axles. Railw. Eng. Sci. 2020;28(4):365–381.
  • Hong X, Wang J, Zhang M, et al. Frequency spectrum and fatigue analysis of T-bolt fracture in DT III fastener based on refined model. Sci Prog. 2020;103(3):0036850420950132. DOI:10.1177/0036850420950132
  • Yu Z, Yuan Y, Zhang Y, et al. Fatigue properties of elastic bars of fastenting systems installed with high-speed railways. J China Railway Soc. 2014;36(7):90–95.
  • Ming H, Liu X, Lai J, et al. Fretting wear between alloy 690 and 405 stainless steel in high temperature pressurized water with different normal force and displacement. J Nucl Mater. 2020;529:151930.
  • Hertz. On the contact of elastic solids. Journal für die reine und angewandte Mathematik. 1881;92:156–171.
  • Elleuch K, Fouvry S, Kapse P. Fretting maps for anodised aluminium alloys. Thin Solid Films. 2003;426(1–2):271–280.
  • Vingsbo O, Odfalk M, Shen N. Fretting maps and fretting behavior of some F.C.C. metal-alloys. Wear. 1990;138(1–2):153–167.
  • Zhou Z, Nakazawa K, Zhu M, et al. Progress in fretting maps. Tribol Int. 2006;39(10):1068–1073. DOI:10.1016/j.triboint.2006.02.001
  • Vingsbo O, Söderberg S. On fretting maps. Wear. 1988;126(2):131–147.
  • Zhou Z, Gu S, Vincent L. An investigation of the fretting wear of two aluminium alloys. Tribol Int. 1997;30(1):1–7.
  • Zhou Z, Vincent L. Cracking induced by fretting of aluminium alloys. J Tribol-T Asme. 1997;119(1):36–42.
  • Zhu M, Zhou Z. On the mechanisms of various fretting wear modes. Tribol Int. 2011;44(11):1378–1388.
  • Xiao T, Wen D, Wang S, et al. Investigation on fretting wear of Al-Li alloy. Ind Lubr Tribol. 2020;72(7):913–921. DOI:10.1108/ILT-11-2019-0490
  • Godet M. Third-bodies in tribology. Wear. 1990;136(1):29–45.
  • Johnson K. Mechanics of adhesion. Tribol Int. 1998;31(8):413–418.
  • Pham-Ba S, Brink T, Molinari J-F. Adhesive wear and interaction of tangentially loaded micro-contacts. Int J Solids Struct. 2020;188-189:261–268.
  • Varenberg M, Halperin G, Etsion I. Different aspects of the role of wear debris in fretting wear. Wear. 2002;252(11–12):902–910.
  • Waterhouse RB. The role of adhesion and delamination in the fretting wear of metallic materials. Wear. 1977;45(3):355–364.

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