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Original Articles

Effect of Running-In (Load and Speed) on Surface Characteristics of Honed Gears

ORCID Icon, ORCID Icon, &
Pages 412-418 | Received 23 Jun 2018, Accepted 02 Jan 2019, Published online: 21 Mar 2019

References

  • Tönshoff, H. K. and Marzenel, C. (2000), “Effect of Gear Honing on Flank Characteristics and Pitting Life,” Production Engineering, 7(1), pp 5–8.
  • Ariura, Y., Ueno, T., and Nakanishi, T. (1983), “An Investigation of Surface Failure of Surface-Hardened Gears by Scanning Electron Microscopy Observations,” Wear, 87(3), pp 305–316.
  • Sjöberg, S., Bjorklund, S., and Olofsson, U. (2011), “The Influence of Manufacturing Method on the Running-In of Gears,” Proceedings of the Institution of Mechanical Engineers - Part J: Journal of Engineering Tribology, 225(10), pp 999–1012.
  • Andersson, S. (1977), “Initial Wear of Gears,” Tribology International, 10(4), pp 206–210.
  • Ismail, R., Tauviqirrahman, M., Jamari, and Schipper, D. J. (2011), “Topographical Change of Engineering Surface Due to Running-In of Rolling Contacts,” New Tribology Ways, pp 131–152. doi:10.5772/15408.
  • Hsu, S. M., Munro, R., and Shen, M. C. (2002), “Wear in Boundary Lubrication,” Proceedings of the Institution of Mechanical Engineers - Part J: Journal of Engineering Tribology, 216(6), pp 427–441.
  • Kragelsky, I. V., Dobychin, M. N., and Kombalov, V. S, eds. (1982), Running-In and Equilibrium Roughness. Chap. 9 in Friction and Wear, 297–316. Pergamon.
  • Sjöberg, S., Sosa, M., Andersson, M., and Olofsson, U. (2016), “Analysis of Efficiency of Spur Ground Gears and the Influence of Running-In,” Tribology International, 93, pp 172–181.
  • Mallipeddi, D., Norell, M., Sosa, M., and Nyborg, L. (2017), “Influence of Running-In On Surface Characteristics of Efficiency Tested Ground Gears,” Tribology International, 115, pp 45–58.
  • Höhn, B., Oster, P., Tobie, T., and Michaelis, K. (2008), “Test Methods for Gear Lubricants,” Goriva I Maz, 47, pp 129–152.
  • Group F-R. (2002), Research Project No. 345 Efficiency Test, FVA: Frankfurt, Germany.
  • Gohar, R. (2001), Elastohydrodynamics, Imperial College Press: London.
  • Andersson, M., Sosa, M., and Olofsson, U. (2016), “The Effect of Running-In on the Efficiency of Superfinished Gears,” Tribology International, 93, pp 71–77.
  • Fitzpatrick, M. E., Fry, A. T., Holdway, P., Kandil, F. A., Shackleton, J., and Suominen, L. (2005), Determination of Residual Stresses by X-ray Diffraction—Issue 2, National Physical Laboratary: Teddington, UK.
  • Locateli, C., Martins, R., and Seabra, J. (2011), “Evolution of Tooth Flank Roughness during Gear Micropitting Tests,” Industrial Lubrication Tribology, 63(1), pp 34–45.
  • Errichello, R. (2012), “Morphology of Micropitting,” Gear Technology, pp 74–81.
  • Li, S. and Kahraman, A. (2013), “Micro-Pitting Fatigue Lives of Lubricated Point Contacts: Experiments and Model Validation,” International Journal of Fatigue, 48, pp 9–18.
  • Tönshoff, H. K., Friemuth, T., and Marzenell, C. (2000), “Properties of Honed Gears during Lifetime,” CIRP Annals, 49(1), pp 431–434.
  • Mallipeddi, D., Norell, M., Sosa, M., and Nyborg, L. (2015), “Stress Distribution over Gear Teeth after Grinding, Running-In and Efficiency Testing,” International Conference on Gears, pp 973–984, VDI-Berichte: Munich, Germany.
  • Sosa, M. (2017), Running-In of Gear—Surface and Efficiency Transfrmation, Doctoral Thesis, Royal Institute of Technology, School of Industrial Engineering and Mangement, Stockholm, Sweden.
  • Mallipeddi, D., Norell, M., Sosa, M., and Nyborg, L. (2019), “The Effect of Manufacturing Method and Running-In Load on the Surface Integrity of Efficiency Tested Ground, Honed and Superfinished Gears,” Tribology International, 131, pp 227–287.
  • Das, A., Sivaprasad, S., Chakraborti, P. C., and Tarafder, S. (2011), “Morphologies and Characteristics of Deformation Induced Martensite during Low Cycle Fatigue Behaviour of Austenitic Stainless Steel,” Materials Science and Engineering A, 528(27), pp 7909–7914.