Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles

In this work, a rib design process is proposed to improve the local stiffness of gearbox housing for agricultural electric vehicles. Unlike conventional engines, electric powertrain noise includes high frequency factors and pure tones. Considering these characteristics, local stiffness was evaluated...

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Main Authors: Gwan-Hee Son, Seung-Je Cho, Young-Jun Park
Format: Article
Language:English
Published: MDPI AG 2019-10-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/21/4571
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spelling doaj-aedae50d667a4e1383f14863452466052020-11-25T01:12:24ZengMDPI AGApplied Sciences2076-34172019-10-01921457110.3390/app9214571app9214571Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric VehiclesGwan-Hee Son0Seung-Je Cho1Young-Jun Park2Department of Biosystems and Biomaterials Science and Engineering, College of Agriculture and Life Sciences, Seoul National University, Gwanak-ro 1, Gwanak-gu, Seoul 08826, KoreaResearch Institute of Agriculture and Life Sciences, Seoul National University, Gwanak-ro 1, Gwanak-gu, Seoul 08826, KoreaDepartment of Biosystems and Biomaterials Science and Engineering, College of Agriculture and Life Sciences, Seoul National University, Gwanak-ro 1, Gwanak-gu, Seoul 08826, KoreaIn this work, a rib design process is proposed to improve the local stiffness of gearbox housing for agricultural electric vehicles. Unlike conventional engines, electric powertrain noise includes high frequency factors and pure tones. Considering these characteristics, local stiffness was evaluated in the frequency range of interest for the prediction of dynamic behavior. The local stiffness of the gearbox housing was evaluated using the finite element (FE) model. Experimental modal analysis and FE model update were conducted to ensure the reliability of the results. Using the results of local stiffness evaluations, the stiffness weak point was identified, and the rib design location was selected through a strain analysis. The shape of the ribs was parameterized by width, length, and height, and parameter studies were used to compare the local stiffness increase rate according to the rib design pattern. According to the results, the stiffness increase rate against the same mass was distributed differently according to the rib shape, and the most efficient rib shape was selected from a manufacturing perspective.https://www.mdpi.com/2076-3417/9/21/4571local stiffness evaluationagricultural electric vehiclerib designfe model updateparameter studynoise and vibration
collection DOAJ
language English
format Article
sources DOAJ
author Gwan-Hee Son
Seung-Je Cho
Young-Jun Park
spellingShingle Gwan-Hee Son
Seung-Je Cho
Young-Jun Park
Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles
Applied Sciences
local stiffness evaluation
agricultural electric vehicle
rib design
fe model update
parameter study
noise and vibration
author_facet Gwan-Hee Son
Seung-Je Cho
Young-Jun Park
author_sort Gwan-Hee Son
title Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles
title_short Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles
title_full Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles
title_fullStr Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles
title_full_unstemmed Rib Design for Improving the Local Stiffness of Gearbox Housing for Agricultural Electric Vehicles
title_sort rib design for improving the local stiffness of gearbox housing for agricultural electric vehicles
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-10-01
description In this work, a rib design process is proposed to improve the local stiffness of gearbox housing for agricultural electric vehicles. Unlike conventional engines, electric powertrain noise includes high frequency factors and pure tones. Considering these characteristics, local stiffness was evaluated in the frequency range of interest for the prediction of dynamic behavior. The local stiffness of the gearbox housing was evaluated using the finite element (FE) model. Experimental modal analysis and FE model update were conducted to ensure the reliability of the results. Using the results of local stiffness evaluations, the stiffness weak point was identified, and the rib design location was selected through a strain analysis. The shape of the ribs was parameterized by width, length, and height, and parameter studies were used to compare the local stiffness increase rate according to the rib design pattern. According to the results, the stiffness increase rate against the same mass was distributed differently according to the rib shape, and the most efficient rib shape was selected from a manufacturing perspective.
topic local stiffness evaluation
agricultural electric vehicle
rib design
fe model update
parameter study
noise and vibration
url https://www.mdpi.com/2076-3417/9/21/4571
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