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

机译:调整高速重型发动机中安装系统振动特性的通用方法

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摘要

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.
机译:当前对安装系统的研究主要集中在低/中功率发动机上,对于高速和重型发动机的报道很少,其振动特性显着增加了复杂性和不确定性。在这项工作中,首先建立了一个通用的动力学模型来描述具有各种安装数量的安装系统的动力学特性。然后,该模型用于优化安装系统。提出了一种改进的鲍威尔共轭方向法,以提高优化效率。根据理论模型获得的优化结果,为V6柴油机构建了安装系统。支架系统振动强度的实验测量结果与理论计算结果非常吻合,表明该模型的有效性。该动力学模型为评估和设计高速重型发动机的安装系统开辟了一条新途径。另一方面,所描绘的动力学模型和优化算法应该在其他安装系统中找到广泛的应用,例如通常具有各种不确定安装的动力传输系统。

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