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Design sensitivity analysis and optimization of an engine mount system using an FRF-based substructuring method

机译:基于FRF的子结构化方法对发动机悬置系统的设计敏感性分析和优化

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The FRF-based substructuring method is one of the most powerful methods in analyzing the responses of complex built-up structures with high modal density. In this paper, a general procedure for the design sensitivity analysis of a vibro-acoustic system has been presented using the FRF-based substructuring formulation. For an acoustic response function, the proposed method gives a parametric design sensitivity expression in terms of the partial derivatives of the connection element properties and the transfer functions of the Substructures. The derived noise sensitivity formula is combined with a non-linear programming module to obtain the optimal design for the engine mount system of a passenger car. The objective function is defined as the area of the interior noise graph integrated over a concerned r.p.m. range. The interior noise variations with respect to the dynamic characteristics of the engine mounts and bushings have been calculated using the proposed sensitivity formulation and transferred to a non-linear optimization software. To obtain the FRFs, a finite element analysis was used for the engine mount structures and experimental techniques Were used for the trimmed body including the cabin cavity. The optimization based on the sensitivity analysis gives the ideal stiffness of the engine mount and bushings. The resultant interior noise in the passenger car shows that the proposed method is efficient and accurate. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 19]
机译:基于FRF的子结构方法是分析具有高模量密度的复杂组合结构响应的最有效方法之一。在本文中,已提出了使用基于FRF的子结构公式来进行振动声系统设计灵敏度分析的通用程序。对于声学响应函数,该方法根据连接元件属性的偏导数和子结构的传递函数给出了参数化设计灵敏度表达式。推导的噪声灵敏度公式与非线性编程模块结合在一起,以获得用于客车发动机安装系统的最佳设计。目标函数定义为在相关r.p.m上积分的内部噪声图的面积。范围。已使用建议的灵敏度公式计算了有关发动机支座和衬套动态特性的内部噪声变化,并将其传输到非线性优化软件中。为了获得FRF,对发动机悬置结构进行了有限元分析,对包括机舱空腔在内的装饰件采用了实验技术。基于灵敏度分析的优化可提供理想的发动机支架和衬套刚度。乘用车中产生的内部噪声表明,该方法是有效且准确的。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:19]

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