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The use of finite element and boundary element models for predicting the vibro-acoustic behavior of layered structures

机译:使用有限元和边界元模型来预测分层结构的振动声学行为

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Layered structures made from elastic and prous materials are widely used as insulation systems in the automotive industry. They have a complex dynamic behavior which is influenced by the various interaction mechanisms within the porous material. The paper concentrates on modeling these systems using a 3-D finite element (FE) approach for the structure combined with a boundary element (BE) procedure for the acoustic radiation process. The key part is a Biot's model for the two phase porous material. A mixed displacement formulation is selected. The model can be used for predicting the surface impedance and/or the transmission loss characteristics of layered material. The combined use of this FE/BE model enables also the evaluation of the acoustic response (radiated power, acoustic field pressure).
机译:由弹性和留性材料制成的层状结构被广泛用作汽车行业的绝缘系统。 它们具有复杂的动态行为,其受多孔材料内的各种相互作用机制的影响。 本文专注于使用3-D有限元(Fe)方法来建模这些系统,该系统用于结构与声辐射过程的边界元件(BE)程序组合。 关键部分是两相多孔材料的Biot模型。 选择混合位移配方。 该模型可用于预测层状材料的表面阻抗和/或传输损耗特性。 该FE / BE模型的组合使用也可以评估声响应(辐射功率,声场压力)。

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