Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission

In recent years the implementation of the electric engine in the automotive industries has been increasingly marked. The speed of the electric motors is much higher than the combustion engine ones, bringing transmission gears to be subjected to high dynamic loads. For this reason the dynamic effect...

Full description

Bibliographic Details
Main Authors: G. Belingardi, V. Cuffaro, F. Curà
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2014-09-01
Series:Frattura ed Integrità Strutturale
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/1322
id doaj-65f420a204594409a667d288d95de47c
record_format Article
spelling doaj-65f420a204594409a667d288d95de47c2021-01-27T17:17:23ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932014-09-01830Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmissionG. BelingardiV. CuffaroF. Curà In recent years the implementation of the electric engine in the automotive industries has been increasingly marked. The speed of the electric motors is much higher than the combustion engine ones, bringing transmission gears to be subjected to high dynamic loads. For this reason the dynamic effects on fatigue life of these components have be taken into account in a more careful way respect to what is done with the usual gears. In the present work the overload effects due to both speed and meshing in a gear couple of an electric vehicle transmission have been analyzed. The electric vehicle is designed for urban people mobility and presents all the requirements to be certified as M1 vehicle (a weight less than 600 kg and a maximum speed more than 90 Km/h). To investigate the overload effects of teeth in contact, the reference gear design Standards (ISO 6336) introduce a specific multiplicative factor to the applied load called Internal Dynamic Factor (Kv). Aim of this work is to evaluate how dynamic overloads may influence the fatigue life of the above quoted gears in term of durability. To this goal, Kv values have been calculated by means of the analytical equations (ISO 6336 Methods B and C) and then they have been compared with the results coming from multibody simulations, involving full rigid and rigid-flexible models. https://www.fracturae.com/index.php/fis/article/view/1322Electric vehicle
collection DOAJ
language English
format Article
sources DOAJ
author G. Belingardi
V. Cuffaro
F. Curà
spellingShingle G. Belingardi
V. Cuffaro
F. Curà
Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
Frattura ed Integrità Strutturale
Electric vehicle
author_facet G. Belingardi
V. Cuffaro
F. Curà
author_sort G. Belingardi
title Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
title_short Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
title_full Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
title_fullStr Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
title_full_unstemmed Dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
title_sort dynamic additional loads influencing the fatigue life of gears in an electric vehicle transmission
publisher Gruppo Italiano Frattura
series Frattura ed Integrità Strutturale
issn 1971-8993
publishDate 2014-09-01
description In recent years the implementation of the electric engine in the automotive industries has been increasingly marked. The speed of the electric motors is much higher than the combustion engine ones, bringing transmission gears to be subjected to high dynamic loads. For this reason the dynamic effects on fatigue life of these components have be taken into account in a more careful way respect to what is done with the usual gears. In the present work the overload effects due to both speed and meshing in a gear couple of an electric vehicle transmission have been analyzed. The electric vehicle is designed for urban people mobility and presents all the requirements to be certified as M1 vehicle (a weight less than 600 kg and a maximum speed more than 90 Km/h). To investigate the overload effects of teeth in contact, the reference gear design Standards (ISO 6336) introduce a specific multiplicative factor to the applied load called Internal Dynamic Factor (Kv). Aim of this work is to evaluate how dynamic overloads may influence the fatigue life of the above quoted gears in term of durability. To this goal, Kv values have been calculated by means of the analytical equations (ISO 6336 Methods B and C) and then they have been compared with the results coming from multibody simulations, involving full rigid and rigid-flexible models.
topic Electric vehicle
url https://www.fracturae.com/index.php/fis/article/view/1322
work_keys_str_mv AT gbelingardi dynamicadditionalloadsinfluencingthefatiguelifeofgearsinanelectricvehicletransmission
AT vcuffaro dynamicadditionalloadsinfluencingthefatiguelifeofgearsinanelectricvehicletransmission
AT fcura dynamicadditionalloadsinfluencingthefatiguelifeofgearsinanelectricvehicletransmission
_version_ 1724320569799737344