A general approach to tune the vibration properties of the mounting system in the high-speed and heavy-duty engine


Autoria(s): Zhang, Baocheng; Zhan, Haifei; Gu, YuanTong
Data(s)

26/05/2016

Resumo

Majority of the current research on the mounting system has emphasised on the low/medium power engine, rare work has been reported for the high-speed and heavy-duty engine, the vibration characteristics of which exhibits significantly increased complexity and uncertainty. In this work, a general dynamics model was firstly established to describe the dynamic properties of a mounting system with various numbers of mounts. Then, this model was employed for the optimization of the mounting system. A modified Powell conjugate direction method was developed to improve the optimization efficiency. Basing on the optimization results obtained from the theoretical model, a mounting system was constructed for a V6 diesel engine. The experimental measurement of the vibration intensity of the mounting systems shows excellent agreement with the theoretical calculations, indicating the validity of the model. This dynamics model opens a new avenue in assessing and designing the mounting system for a high-speed and heavy-duty engine. On the other hand, the delineated dynamics model, and the optimization algorithm should find wide applications for other mounting systems, such as the power transmission system which usually has various uncertain mounts.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/74575/

Publicador

SAGE Publications

Relação

http://eprints.qut.edu.au/74575/1/accepted_version.pdf

DOI:10.1177/1077546314528963

Zhang, Baocheng, Zhan, Haifei, & Gu, YuanTong (2016) A general approach to tune the vibration properties of the mounting system in the high-speed and heavy-duty engine. Journal of Vibration and Control, 22(1), pp. 247-257.

Direitos

Copyright 2014 The Author(s)

Fonte

School of Chemistry, Physics & Mechanical Engineering; Faculty of Science and Technology; Science & Engineering Faculty

Palavras-Chave #091301 Acoustics and Noise Control (excl. Architectural Acoustics) #091304 Dynamics Vibration and Vibration Control #mounting system #vibration #inertia matrix #stiffness matrix
Tipo

Journal Article