Parametric Study Toward Achieving An Optimal Magnetorheological Mount (Paperback)

,
Hybrid vehicles have been developed to increase the fuel economy of existing vehicles. A common issue in hybrid vehicles is the additional vibration and vibration-caused noise. This vibration is primarily caused by the switching of power modes, i.e. from the conventional gasoline engine to the electric or hydraulic motor. In certain cases, this vibration, due to the wide frequency range characteristics, cannot effectively be isolated through the use of conventional isolation technologies. In this work, a mixed mode magnetorheological mount has been investigated to mitigate this and similar wide-frequency vibration. A parametric analysis has been performed on one of the main components of the mount, the elastomeric top. Three different parameters were the focus of this investigation. The rubber thickness (by two means) and height were studied. It was found that varying the mount diameter (thickness) is the most influential parameter that was investigated. The initial analyses to validate the finite element model showed at most a 5% difference. The results of this study will be instrumental for designing and optimizing different mounts.

R1,289

Or split into 4x interest-free payments of 25% on orders over R50
Learn more

Discovery Miles12890
Mobicred@R121pm x 12* Mobicred Info
Free Delivery
Delivery AdviceShips in 10 - 15 working days


Toggle WishListAdd to wish list
Review this Item

Product Description

Hybrid vehicles have been developed to increase the fuel economy of existing vehicles. A common issue in hybrid vehicles is the additional vibration and vibration-caused noise. This vibration is primarily caused by the switching of power modes, i.e. from the conventional gasoline engine to the electric or hydraulic motor. In certain cases, this vibration, due to the wide frequency range characteristics, cannot effectively be isolated through the use of conventional isolation technologies. In this work, a mixed mode magnetorheological mount has been investigated to mitigate this and similar wide-frequency vibration. A parametric analysis has been performed on one of the main components of the mount, the elastomeric top. Three different parameters were the focus of this investigation. The rubber thickness (by two means) and height were studied. It was found that varying the mount diameter (thickness) is the most influential parameter that was investigated. The initial analyses to validate the finite element model showed at most a 5% difference. The results of this study will be instrumental for designing and optimizing different mounts.

Customer Reviews

No reviews or ratings yet - be the first to create one!

Product Details

General

Imprint

Lap Lambert Academic Publishing

Country of origin

Germany

Release date

April 2012

Availability

Expected to ship within 10 - 15 working days

First published

April 2012

Authors

,

Dimensions

229 x 152 x 6mm (L x W x T)

Format

Paperback - Trade

Pages

92

ISBN-13

978-3-8484-2736-9

Barcode

9783848427369

Categories

LSN

3-8484-2736-2



Trending On Loot