Experimental Investigation of Shrouding on Meshed Spur Gear Windage Power Loss

F-0073-2017-12146

5/9/2017

Authors
Abstract
Content
ABSTRACT

Windage power loss in high-speed gearboxes result in efficiency losses and increased heating due to drag on the gear teeth. Meshed spur gear windage power loss test results are presented at ambient oil inlet temperatures both with and without shrouding. The rate of windage power loss is observed to increase above 10,000 ft./min., gear surface speed, similar to results presented in the literature. Shrouding is observed to become more effective above 15,000 ft./min., decreasing power loss by 10% at 25,000 ft./min. The need for gearbox oil drain slots limits the effectiveness of shrouding on reducing windage power loss. Also, windage power loss is observed to decrease with increasing gearbox temperatures and to increase with oil flow. Windage power losses for the unshrouded meshed spur gears are 7x more than losses determined from unshrouded single spur gear tests. A 6x to 12x increase in windage power loss is observed comparing shrouded single spur gear data with shrouded meshed spur gear data. Based on this preliminary study additional research is suggested to determine the effect of oil drain slot configurations, axial and radial shroud clearances, and higher gear surface speeds on windage power loss. Additional work is also suggested to determine the sensitivity of windage power loss to oil temperature and oil flow. Windage power loss of meshed spur gears tested in both the shrouded and unshrouded configurations is shown to be more than double versus the same spur gears run individually in the same shroud configurations. Further study of the physical processes behind these results is needed for optimizing gearbox shrouds for minimum windage power loss.

Meta TagsDetails
Pages
9
Citation
, Delgado, I., and Hurrell, M., "Experimental Investigation of Shrouding on Meshed Spur Gear Windage Power Loss," Vertical Flight Society 73rd Annual Forum & Technology Display, Fort Worth, Texas, May 9, 2017, .
Additional Details
Publisher
Published
5/9/2017
Product Code
F-0073-2017-12146
Content Type
Technical Paper
Language
English