Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System

A permanent magnet traction motor integrated with a planetary gearbox is studied. A machine of this kind can be employed as a propulsion motor in off-road machines like agricultural tractors that have to produce either very high traction forces at low speeds or reach higher traveling speeds at lower...

Full description

Bibliographic Details
Main Authors: Juho Montonen, Janne Nerg, Maria Polikarpova, Juha Pyrhonen
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8723470/
id doaj-75d75092c33245338ac1dcb01fea0296
record_format Article
spelling doaj-75d75092c33245338ac1dcb01fea02962021-03-29T23:38:05ZengIEEEIEEE Access2169-35362019-01-017691086911810.1109/ACCESS.2019.29195068723470Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive SystemJuho Montonen0https://orcid.org/0000-0001-5836-9474Janne Nerg1Maria Polikarpova2Juha Pyrhonen3Lappeenranta University of Technology, Lappeenranta, FinlandLappeenranta University of Technology, Lappeenranta, FinlandLappeenranta University of Technology, Lappeenranta, FinlandLappeenranta University of Technology, Lappeenranta, FinlandA permanent magnet traction motor integrated with a planetary gearbox is studied. A machine of this kind can be employed as a propulsion motor in off-road machines like agricultural tractors that have to produce either very high traction forces at low speeds or reach higher traveling speeds at lower torques. In principle, a constant power curve as a function of speed is desired, which means that the output torque of the drive system should be inversely proportional to the operating speed of the off-road machine. Such driving conditions are challenging as the electric motor has to be heavily overloaded at the lowest speeds. Therefore, it is essential to accurately evaluate not only the electromagnetic performance but also the thermal performance of the machine. This paper studies the integration principles of an electrical machine and a planetary gear. The integration poses some new challenges to the design. For example, also the lubrication and cooling can, and, in practice, must be integrated into the system. The thermal performance of the motor and cooling with the lubrication oil of the gear were analyzed. The long-term tests with the oil cooling system were carried out to verify the successful integration.https://ieeexplore.ieee.org/document/8723470/Permanent magnet machinestraction motorsplanetary gearlumped-parameter modelthermal analysis
collection DOAJ
language English
format Article
sources DOAJ
author Juho Montonen
Janne Nerg
Maria Polikarpova
Juha Pyrhonen
spellingShingle Juho Montonen
Janne Nerg
Maria Polikarpova
Juha Pyrhonen
Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System
IEEE Access
Permanent magnet machines
traction motors
planetary gear
lumped-parameter model
thermal analysis
author_facet Juho Montonen
Janne Nerg
Maria Polikarpova
Juha Pyrhonen
author_sort Juho Montonen
title Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System
title_short Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System
title_full Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System
title_fullStr Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System
title_full_unstemmed Integration Principles and Thermal Analysis of an Oil-Cooled and -Lubricated Permanent Magnet Motor Planetary Gearbox Drive System
title_sort integration principles and thermal analysis of an oil-cooled and -lubricated permanent magnet motor planetary gearbox drive system
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description A permanent magnet traction motor integrated with a planetary gearbox is studied. A machine of this kind can be employed as a propulsion motor in off-road machines like agricultural tractors that have to produce either very high traction forces at low speeds or reach higher traveling speeds at lower torques. In principle, a constant power curve as a function of speed is desired, which means that the output torque of the drive system should be inversely proportional to the operating speed of the off-road machine. Such driving conditions are challenging as the electric motor has to be heavily overloaded at the lowest speeds. Therefore, it is essential to accurately evaluate not only the electromagnetic performance but also the thermal performance of the machine. This paper studies the integration principles of an electrical machine and a planetary gear. The integration poses some new challenges to the design. For example, also the lubrication and cooling can, and, in practice, must be integrated into the system. The thermal performance of the motor and cooling with the lubrication oil of the gear were analyzed. The long-term tests with the oil cooling system were carried out to verify the successful integration.
topic Permanent magnet machines
traction motors
planetary gear
lumped-parameter model
thermal analysis
url https://ieeexplore.ieee.org/document/8723470/
work_keys_str_mv AT juhomontonen integrationprinciplesandthermalanalysisofanoilcooledandlubricatedpermanentmagnetmotorplanetarygearboxdrivesystem
AT jannenerg integrationprinciplesandthermalanalysisofanoilcooledandlubricatedpermanentmagnetmotorplanetarygearboxdrivesystem
AT mariapolikarpova integrationprinciplesandthermalanalysisofanoilcooledandlubricatedpermanentmagnetmotorplanetarygearboxdrivesystem
AT juhapyrhonen integrationprinciplesandthermalanalysisofanoilcooledandlubricatedpermanentmagnetmotorplanetarygearboxdrivesystem
_version_ 1724189206219063296