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Application of the Hybrid FE-SEA Method to Predict Sound Transmission Through Complex Sealing Systems

机译:混合用Fe-Sea方法在复杂密封系统中预测声音传输的应用

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Currently, the use of numerical and analytical tools during a vehicle development is extensive in the automotive industry. This assures that the required performance levels can be achieved from the early stages of development. However, there are some aspects of the vibro-acoustic performance of a vehicle that are rarely assessed through numerical or analytical analysis. An example is the modeling of sound transmission through vehicle sealing systems. In this case, most of the investigations have been done experimentally, and the analytical models available are not sufficiently accurate. In this paper, the modeling of the sound transmission through a vehicle door seal is presented. The study is an extension of a previous work in which the applicability of the Hybrid FE-SEA method was demonstrated for predicting the TL of sealing elements. A numerical validation of simplified Hybrid FE-SEA model is performed, which is followed by the application of the method to the TL of a car door seal. A full non-linear deformation/contact analysis is used to estimate the deformed geometry of the door seal in real conditions. The geometry is then used in a vibro-acoustic analysis to predict the in-situ transmission loss of the seal using a local Hybrid FE-SEA model. The channel between the door and the car structure where the seal is located is also included in the analysis. Results for the transmission loss are compared with experimental data, showing a good correlation.
机译:目前,在汽车发展过程中使用数值和分析工具在汽车行业中广泛。这确保了所需的性能水平可以从开发的早期阶段实现。然而,通过数值或分析分析很少评估的车辆的vibro声学性能存在一些方面。一个例子是通过车辆密封系统进行声音传输的建模。在这种情况下,大多数研究已经通过实验完成,可用的分析模型不够准确。在本文中,呈现了通过车门密封件的声音传输的建模。该研究是先前作品的延伸,其中杂交Fe-Sea方法的适用性被证明用于预测密封元件的TL。执行简化混合Fe-Sea模型的数值验证,然后将该方法应用于车门密封的TL。完全非线性变形/接触分析用于估计实际条件下门密封的变形几何形状。然后将几何形状用于振动声学分析中,以预测使用局部混合Fe-Sea模型的原位传输损耗。门和密封所在的汽车结构之间的通道也包括在分析中。将传输损耗的结果与实验数据进行比较,显示出良好的相关性。

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