Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications

Due to their large torque-speed ratio and transmission efficiency, planetary gears are widely used in the automotive industry. However, high amplitude vibrations remain their critical weakness, which limits their usage especially when new strict noise legislations come into action. A new approach to...

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Main Author: Oudich, Hamza
Format: Others
Language:English
Published: KTH, Farkostteknik och Solidmekanik 2020
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-276775
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spelling ndltd-UPSALLA1-oai-DiVA.org-kth-2767752020-09-15T05:25:59ZAnalytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry ModificationsengOudich, HamzaKTH, Farkostteknik och Solidmekanik2020Planetary gearsInstabilitiesResonanceVibrationdynamic responseSpectral Iterative MethodModal analysisStatic and dynamic transmission errorGear mesh stiffnessMacro and micro-geometryPhasingApplied MechanicsTeknisk mekanikDue to their large torque-speed ratio and transmission efficiency, planetary gears are widely used in the automotive industry. However, high amplitude vibrations remain their critical weakness, which limits their usage especially when new strict noise legislations come into action. A new approach to handle the instability problems of planetary gears encountered in real industrial context is presented in this work. First, the dynamic response of a planetary gear failing to pass the noise regulations is theoretically investigated through an analytical model. The equations of motion were solved using the Spectral Iterative Method. The observed experimental results correlated well with those from the developed model. In order to limit the resonance phenomena, impacts of different macro and micro-geometry modifications were analytically investigated: quadratic teeth profile, different planets positioning, different number of teeth and number of planets. Optimum modifications were retrieved and are expected to be tested experimentally on a test bench and on the truck. Finally, the analytical model’s limits and sensitivity to different parameters were investigated in order to certify its reliability, and suggestions for improvements were presented. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-276775TRITA-SCI-GRU ; 2020:037application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Planetary gears
Instabilities
Resonance
Vibration
dynamic response
Spectral Iterative Method
Modal analysis
Static and dynamic transmission error
Gear mesh stiffness
Macro and micro-geometry
Phasing
Applied Mechanics
Teknisk mekanik
spellingShingle Planetary gears
Instabilities
Resonance
Vibration
dynamic response
Spectral Iterative Method
Modal analysis
Static and dynamic transmission error
Gear mesh stiffness
Macro and micro-geometry
Phasing
Applied Mechanics
Teknisk mekanik
Oudich, Hamza
Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications
description Due to their large torque-speed ratio and transmission efficiency, planetary gears are widely used in the automotive industry. However, high amplitude vibrations remain their critical weakness, which limits their usage especially when new strict noise legislations come into action. A new approach to handle the instability problems of planetary gears encountered in real industrial context is presented in this work. First, the dynamic response of a planetary gear failing to pass the noise regulations is theoretically investigated through an analytical model. The equations of motion were solved using the Spectral Iterative Method. The observed experimental results correlated well with those from the developed model. In order to limit the resonance phenomena, impacts of different macro and micro-geometry modifications were analytically investigated: quadratic teeth profile, different planets positioning, different number of teeth and number of planets. Optimum modifications were retrieved and are expected to be tested experimentally on a test bench and on the truck. Finally, the analytical model’s limits and sensitivity to different parameters were investigated in order to certify its reliability, and suggestions for improvements were presented.
author Oudich, Hamza
author_facet Oudich, Hamza
author_sort Oudich, Hamza
title Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications
title_short Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications
title_full Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications
title_fullStr Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications
title_full_unstemmed Analytical Investigation of Planetary Gears Instabilities and the Impact of Micro-Macro Geometry Modifications
title_sort analytical investigation of planetary gears instabilities and the impact of micro-macro geometry modifications
publisher KTH, Farkostteknik och Solidmekanik
publishDate 2020
url http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-276775
work_keys_str_mv AT oudichhamza analyticalinvestigationofplanetarygearsinstabilitiesandtheimpactofmicromacrogeometrymodifications
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