2021
DOI: 10.1007/s12206-021-0829-0
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Parameter design method for the heat transfer performance of a fan-driven gearbox under planetary gear opening and oil-return conditions

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Cited by 4 publications
(2 citation statements)
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“…The ring gear is fixed outside the side deck, and the power is transmitted from the sun gear to the planetary carrier. During the transmission process of the planet gear reducer, each rolling bearing generates heat because of the friction between the inner/outer ring and the rollers, and each meshing tooth generates heat because of the relative sliding between the meshing tooth surfaces [26,27] .…”
Section: Source Term Calculation Of Flow Fieldmentioning
confidence: 99%
“…The ring gear is fixed outside the side deck, and the power is transmitted from the sun gear to the planetary carrier. During the transmission process of the planet gear reducer, each rolling bearing generates heat because of the friction between the inner/outer ring and the rollers, and each meshing tooth generates heat because of the relative sliding between the meshing tooth surfaces [26,27] .…”
Section: Source Term Calculation Of Flow Fieldmentioning
confidence: 99%
“…Mastrone et al [4] analyzed the internal oil distribution law under different rotational speeds for splash lubrication of spur gear pair, and concluded that the splash amount of lubricating oil increased with the increase of rotational speed. Lu et al [5][6] established the analysis model of splash lubrication of spiral bevel gear and single stage planetary gear system, and analyzed the convective heat transfer coefficient and temperature distribution of gear and bearing surface. Pang et al [7] studied the influence of different speed, torque and output power on the transient temperature field of sun gear and planetary gear through finite element method.…”
Section: Introductionmentioning
confidence: 99%