Invention Grant
US08777490B2 Method for dynamically absorbing shocks in a power shaft, in particular a supercritical shaft, and shock-absorbing architecture for implementing said method 有权
用于动态吸收动力轴,特别是超临界轴中的冲击的方法,以及用于实现所述方法的减震结构

  • Patent Title: Method for dynamically absorbing shocks in a power shaft, in particular a supercritical shaft, and shock-absorbing architecture for implementing said method
  • Patent Title (中): 用于动态吸收动力轴,特别是超临界轴中的冲击的方法,以及用于实现所述方法的减震结构
  • Application No.: US13703642
    Application Date: 2011-06-29
  • Publication No.: US08777490B2
    Publication Date: 2014-07-15
  • Inventor: David CazauxSylvain Pierre Votie
  • Applicant: David CazauxSylvain Pierre Votie
  • Applicant Address: FR Bordes
  • Assignee: Turbomeca
  • Current Assignee: Turbomeca
  • Current Assignee Address: FR Bordes
  • Agency: Oblon, Spivak, McClelland, Maier & Neustadt, L.L.P.
  • Priority: FR1055272 20100701
  • International Application: PCT/FR2011/051517 WO 20110629
  • International Announcement: WO2012/001304 WO 20120105
  • Main IPC: F16C27/00
  • IPC: F16C27/00
Method for dynamically absorbing shocks in a power shaft, in particular a supercritical shaft, and shock-absorbing architecture for implementing said method
Abstract:
An architecture making it possible to provide sufficient absorption of shocks for a power shaft while maintaining rigidity at front bearings so as to not compromise meshing of power teeth of a drive pinion. A compressible dynamic shock absorption is provided in alignment with a downstream shock absorber of an additional meshing. An assembly for dynamically absorbing shocks for a power shaft includes upstream and downstream bearings including power rollers mounted on two casings and flanking a speed-reducing teeth meshing. The downstream bearing is coupled to at least one additional roller bearing associated with a compressible shock absorber to form a downstream shock absorber axially offset relative to the upstream bearing opposite the teeth meshing. Both downstream bearings are connectable by a flexible frame mounted on the common casing. The architecture can be used for power-transmission shafts, for example supercritical shafts in turbine engines.
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