Splined shafts used in gas turbines are being subjected to an ever more arduous set of loads, but the strength of this class of joints has hitherto not been probed. This paper describes preliminary contributions to determining this by first performing a finite element analysis of the spline overall in order to determine the contact conditions, including surface slip displacement. These conditions are then reproduced in a simplified fretting fatigue apparatus in order to reduce the number of prototypical tests required.
FordT.Mainshafts for the Trent. Aircr. Engng and Aerospace Technol., 1997, 69 (6), 555–560.
2.
CiavarellaM.HillsD. A.MonnoG.The influence of rounded edges on indentation by a flat punch. Proc. Instn Mech. Engrs, Part C, Journal of Mechanical Engineering Science, 1998, 212 (C4), 319–328.
3.
CiavarellaM.The generalised Cattaneo partial slip plane contact problem. Part I Theory, Part II Examples. Int. J. Solids Structs, 1998, 35, 2349–2378.
4.
CiavarellaM.DemelioG.HillsD. A.An analysis of rotating bending fretting fatigue tests using ‘bridge’ specimens. In Fretting Fatigue: Current Technology and Practices (Eds HoeppnerD. W.ChandrasekaranV.ElliotC. B.), 1999, ASTM STP 1367 (American Society for Testing and Materials, West Conshohocken, Pennsylvania).
5.
FellowsL. J.NowellD.HillsD. A.On the estimation of fretting fatigue cracks. Wear, 1997, 205, 120–129.