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ASME Press Select Proceedings
International Conference on Instrumentation, Measurement, Circuits and Systems (ICIMCS 2011)
By
ISBN:
9780791859902
No. of Pages:
1400
Publisher:
ASME Press
Publication date:
2011
eBook Chapter
129 Simulation on Vibration Radiation Noise from Rear Driving Axle of Minibus Based on Virtual Lab Acoustics
By
Huibin Li
,
Huibin Li
School of Mechanical and Vehicular Engineering,
Beijing Institute of Technology
, Beijing,
; huibinli@163.comPRC
, 100081
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Mengxi Ning
,
Mengxi Ning
School of Mechanical and Vehicular Engineering,
Beijing Institute of Technology
, Beijing,
; 782084401@qq.comPRC
, 100081
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Huihui Zhai
,
Huihui Zhai
School of Mechanical and Vehicular Engineering,
Beijing Institute of Technology
, Beijing,
; zhaihuihui@163.comPRC
, 100081
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Bo Yu
Bo Yu
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Page Count:
4
-
Published:2011
Citation
Li, H, Ning, M, Zhai, H, & Yu, B. "Simulation on Vibration Radiation Noise from Rear Driving Axle of Minibus Based on Virtual Lab Acoustics." International Conference on Instrumentation, Measurement, Circuits and Systems (ICIMCS 2011). Ed. Ming, C. ASME Press, 2011.
Download citation file:
In this paper, firstly the vibration response of acceleration of the rear driving axle caused by the common excitation forces were calculated by using the finite element software ABAQUS, and then put these calculation results as a boundary condition input for the acoustic analysis software Virtual Lab Acoustics. The radiating noises from the driving rear axle were calculated to identify the main noise source, and were compared with the experimental results. These results can provide a reliable basis for reducing the noise and vibration of the rear driving axle of the minibus.
Abstract
Keywords:
Introduction
Mesh Structure of Driving Axle
Calculate the Vibration Response
Set Up the Boundary Element Meshes of the Driving Axle
Calculate the Radiation Noise from the Driving Axle Structure
Basic Formula for Direct Boundary Element Method
Calculation for Vibration Radiation Noise of Driving Axle by Using Direct Boundary Element Method
Conclusions
Acknowledgments
References
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