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Hybrid Gear Performance Under Loss-of-Lubrication Conditions

Kelsen E. LaBerge, Stephen P. Berkebile, US Army Research Laboratory
Robert F. Handschuh, Gary D. Roberts, NASA Glenn Research Center

May 8, 2017

https://doi.org/10.4050/F-0073-2017-12144

Abstract:
Hybrid composite gear technology is being investigated to increase power density in rotorcraft drive systems. These gears differ from conventional steel gears in that the structural web material is replaced with a lightweight carbon fiber composite. Past studies have focused on performance of this technology under normal operating conditions, however, for this technology to be viable it must also withstand adverse conditions. The study presented here evaluates the performance of hybrid gears under loss-of-lubrication conditions in NASA Glenn Research Center’s Contact Fatigue Test Facility. Two experiments are presented using small-scale 3.5 inch (8.9 cm) pitch diameter hybrid gears and compared to a baseline steel gear pair. Results of these tests show that there are limitations to the use of a hexagonal interlock pattern between the steel and composite. There is also evidence that the presence of polymer in the gear during an oil out event has a potential to increase time to failure. Further studies are planned to expand on these initial findings.


Hybrid Gear Performance Under Loss-of-Lubrication Conditions

  • Presented at Forum 73
  • 7 pages
  • SKU # : F-0073-2017-12144
  • Propulsion

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Hybrid Gear Performance Under Loss-of-Lubrication Conditions

Authors / Details:
Kelsen E. LaBerge, Stephen P. Berkebile, US Army Research Laboratory
Robert F. Handschuh, Gary D. Roberts, NASA Glenn Research Center