My Account Log in

1 option

Application of Experimental Transfer Path Analysis and Hybrid FRF-Based Substructuring Model to Structure-Borne Noise SsangYong Motors Company

SAE Technical Papers (1906-current) Available online

View online
Format:
Conference/Event
Author/Creator:
Kim, Kim, author.
Contributor:
Kim, Choonhyu
Kim, Sunggi
Lee, Jaewoong
Conference Name:
SAE 2015 Noise and Vibration Conference and Exhibition (2015-06-22 : Grand Rapids, Michigan, United States)
Language:
English
Physical Description:
1 online resource
Place of Publication:
Warrendale, PA SAE International 2015
Summary:
AbstractThis paper describes a structure-borne noise reduction process that was developed using a combination of experimental and analytical methods. First, the major noise paths were identified using experimental Transfer Path Analysis (TPA). Next, FEA-Experimental modeling and forced response simulation were conducted using the Hybrid FEA-Experimental FRF method. The Hybrid FEA-Experimental FRF-Based Substructuring (FBS) model was used along with Operational Deflection Shape (ODS) and Modal Analysis. The Hybrid FEA-Experimental model consisted of an experimental FRF representation of the body and a finite element model of a sub-frame. The finite element of the sub-frame was created by using Altair HyperMesh from CATIA images and the dynamic analysis was carried out by using MSC Nastran. The natural frequency and frequency response function of the finite element sub-frame model were compared with that of a real sub-frame to determine the validity of applying the Hybrid FBS method. By comparing the results based on the finite element model with the predicted results of a real sub-frame, the usefulness of the Hybrid FBS application was confirmed. The Hybrid FEA-Experimental FRF model was then used to simulate the structure-borne noise reduction that would be obtained using a modified frame, prior to the availability of a prototype. Modified hardware testing was used as the final step in the process to confirm the results of the simulation
Notes:
Vendor supplied data
Publisher Number:
2015-01-2267
Access Restriction:
Restricted for use by site license

The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.

My Account

Shelf Request an item Bookmarks Fines and fees Settings

Guides

Using the Library Catalog Using Articles+ Library Account