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Research Article

Effect of microstructure on the high cycle fatigue behaviour of DP 600 and SPFH 590 steels with and without a hole

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Pages 1236-1245 | Received 21 Jun 2021, Accepted 01 Oct 2021, Published online: 26 Oct 2021

References

  • Mizui M, et al. Application of high strength steel sheets for automotive wheels, International congress and exposition. SAE transactions; 1985; SAE International; Detroit, Michigan; 1-14.
  • Das B, et al. The effect of thickness variation and pre-strain on the cornering fatigue life prediction of a DP600 steel wheel disc. Int J Fatigue. 2020;139:1–14.
  • Topac MM, et al. Fatigue life prediction of a heavy vehicle steel wheel under radial loads by using finite element analysis. Eng Fail Anal. 2012;20:67–79.
  • Tebaldini M, et al. Estimation of fatigue limit of a A356-T6 automotive wheel in presence of defects. 3rd International symposium on fatigue design and material defects; 2017; FDMD; 19–22.
  • Ning W, et al. Fatigue property of low cost and high strength wheel steel for commercial vehicle. J Iron Steel Res Int. 2009;16(4):44–48.
  • Alegre JM, et al. A finite element simulation methodology of the fatigue behaviour of punched and drilled plate components. Eng Fail Anal. 2004;11:737–750.
  • Shiozaki T, et al. Effect of residual stresses on fatigue strength of high strength steel sheets with punched holes. Int J Fatigue. 2015;80:324–331.
  • Sighley JE. Mechanical engineering design; McGraw-Hill; 2011.
  • Bergengren Y, et al. The influence of machining defects and inclusions on the fatigue properties of a hardened spring steel. Fatigue Fract Eng Mater Struct. 1995;18(10):1071–1087.
  • Guan M, et al. Fatigue crack growth behaviors in hot-rolled low carbon steels: A comparison between ferrite–pearlite and ferrite–bainite microstructures. Mater Sci Eng A. 2013;A559:875–881.
  • Ghosal P, et al. Hole fatigue performance of DP600 steel under different pre-straining paths. Theor Appl Fract Mech. 2020;108:1–12.
  • Zheng Z, et al. Fractographic study of fatigue cracks in a steel car wheel. Eng Fail Anal. 2015;47:199–207.
  • Barsom JM. Fatigue-crack propagation in high yield-strength steels. Eng Fract Mech. 1971;2(4):307–317.
  • Nakai Y, et al. Fatigue crack initiation site and propagation paths in high-cycle fatigue of magnesium alloy AZ31. Int J Fatigue. 2019;123:248–253.
  • Kamaya M. Characterization of microstructural damage due to low-cycle fatigue by EBSD observation. Mater Charact. 2009;60:1454–1462.
  • ASTM Designation E 8-2004, Standard Test Methods for Tension Testing of Metallic Materials, American Society for Testing and Materials (ASTM) International.
  • ASTM Designation E 466-96, Standard Practice for Conducting Force Controlled Constant Amplitude Axial Fatigue Tests of Metallic Materials, American Society for Testing and Materials (ASTM) International.
  • Mukherjee S, et al. Three-dimensional atom probe microscopy study of interphase precipitation and nanoclusters in thermomechanically treated titanium–molybdenum steels. Acta Mater. 2013;61:2521–2530.
  • Mukherjee S, et al. Clustering and precipitation processes in a ferritic titanium-molybdenum microalloyed steel. J Alloys Compd. 2017;690:621–632.
  • Dieter GE. Mechanical metallurgy. London: McGraw Hill Book Company; 1988.
  • Adamczyk-Cieslak B, et al. Low-cycle fatigue behaviour and microstructural evolution of pearlitic and bainitic steels. Mater Sci Eng A. 2019;747:144–153.
  • Verlinden B, Driver J, Samajdar I, et al. Thermo-mechanical processing of Metallic Materials, first ed., pergamon Materials series. Oxford: Elsevier; 2007.
  • Wright SI, et al. A review of strain analysis using electron backscattered diffraction. Microsc Microanal. 2011;17(3):316–329.
  • Wright SI, et al. A review of strain analysis using electron backscatter diffraction. Microsc Microanal. 2011;17:316–329.

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