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Research Article

Residual strain–stress in manganese steel railway crossing determined by synchrotron and laboratory X-rays

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Pages 6-13 | Received 15 Jan 2020, Accepted 15 Nov 2020, Published online: 14 Dec 2020

References

  • Webster PJ, Wang X, Mills G, et al. Residual stress changes in railway rails. Physica B. 1992;180–181(2):1029–1031.
  • Sasaki T, Takahashi S, Kanematsu Y, et al. Measurement of residual stresses in rails by neutron diffraction. Wear. 2008;265:1402–1407.
  • Lo KH, Mummery P, Buttle DJ. Characterisation of residual principal stresses and their implications on failure of railway rails. Eng Fail Anal. 2010;17:1273–1284.
  • Webster PJ, Hughes DJ, Mills G, et al. Synchrotron X-ray measurement of residual stress in a worn railway rail. Mater Sci Forum. 2002;404–407:767–772.
  • Kaiser R, Stefenelli M, Hatzenbichler T, et al. Experimental characterization and modelling of triaxial residual stresses in straightened railway rails. J Strain Anal Eng Des. 2015;50(3):190–198.
  • Pyzalla A, Wang L, Wild E, et al. Changes in microstructure, texture and residual stresses on the surface of a rail resulting from friction and wear. Wear. 2001;251(1–12):901–907.
  • Solano-Alvarez W, Peet MJ, Pickering EJ, et al. Synchrotron and neural network analysis of the influence of composition and heat treatment on the rolling contact fatigue of hypereutectoid pearlitic steels. Mater Sci Eng A. 2017;707:259–269.
  • Wiest M, Daves W, Fischer FD, et al. Deformation and damage of a nose rail due to wheel passages. Wear. 2008;265:1431–1438.
  • Dhar S, Danielsen HK, Fæster S, et al. Crack formation within a Hadfield manganese steel crossing nose. Wear. 2019;438–439:203049.
  • Dhar S, Zhang Y, Danielsen HK, et al. Synchrotron X-ray measurement of residual strain within the nose of a worn manganese steel railway crossing. 38th Risø International Symposium on Materials Science. 2017 Sep 4–8; Risø, Denmark. IOP Conference Series: Materials Science and Engineering; 2017. 219. p. 012016.
  • Larson BC, Yang W, Ice GE, et al. Three-dimensional X-ray structural microscopy with submicrometre resolution. Nature. 2002;415:887–890.
  • Tishchler JZ. Reconstructing 2D and 3D X-ray orientation map from white beam Laue. In: Barabash R, Ice GE, editors. Strain and dislocation gradients from diffraction. London: Imperial College Press; 2014. p. 358–375.
  • Liu W, Zschack P, Tischler JZ, et al. X-ray Laue diffraction microscopy in 3D at the advanced photon source. In: McNulty I, Eyberger C, Lai B, editors. In: Proceedings of the 10th International Conference on X-ray Microscopy; 2010 Aug 15–20; Chicago (IL), USA: AIP Conference Proceedings 2010. 1365. p. 108–111.
  • Levine LE, Okoro C, Xu R. Full elastic strain and stress tensor measurements from individual dislocation cells in copper through-Si vias. IUCrJ. 2015;2:635–642.
  • Jakobsen B, Poulsen HF, Lienert U, et al. Direct determination of elastic strains and dislocation densities in individual subgrains in deformation structures. Acta Mater. 2007;55:3421–3430.
  • Fitzpatrick ME, Fry AT, Holdway P, et al. Determination of residual stresses by X-ray diffraction. Issue 2. Teddington: National Physical Laboratory; 2005. p. 6–10.
  • Welzel U, Ligot J, Lamparter P, et al. Stress analysis of polycrystalline thin films and surface regions by X-ray diffraction. J Appl Crystallogr. 2005;38:1–29.
  • Noyan IC, Cohen JB. Determination of Strain and Stress Fields by Diffractuin Methods. In: Ilschner B, Grant NJ, editors. Residual stress: measurement by diffraction and Interpretation. New York-Berlin-Heidelberg-London-Paris-Tokyo: Springer Series on materials research and engineering; 1987. p. 119–125.
  • Brinksmeier E. Improvements in X-ray stress Analysis. Adv in Surf Treat, Technol - Appl - Eff. 1986;(2): 109–115.
  • CEN/TC256/WG4. Draft standard railway applications-track heavy rail. Part 1: flat bottom symmetrical railway rails 46 kg/m and above. European Committee for Standardization; 1997.
  • Luzin V, Prask HJ, Gnaupel-Herold T, et al. Neutron residual stress measurements in rails. Neutron News. 2013;24(3):9–13.
  • Kelleher J, Prime MB, Buttle D, et al. The measurement of residual stress in railway rails by diffraction and other methods. J Neutron Res. 2003;11(4):187–193.
  • Zhang FC, Lv B, Wang TS, et al. Explosion hardening of Hadfield steel crossing. Mater Sci Technol. 2010;26(2):223–229.
  • Hashin Z, Shtrikman S. A Variational approach to the theory of the elastic behaviour of polycrystals. J Mech Phys Solids. 1962;10:343–352.
  • Liu H, Zhang X, Hansen N. Numerical investigation of a shot peening process by a finite element approach. In: Fæster S, Hansen N, Jensen DJ, et al. editors. Proceedings of the 35th Risø International Symposium on Materials Science. Denmark; 2014. p. 381–388.

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