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Frame Resonance of High Air Flow Resistivity Plastic Foams: Properties to Improve Acoustical Absorption of Composite Multi-Layered Systems

机译:高空气流动电阻率塑料泡沫的框架共振:改善复合多层系统声学吸收的性质

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The optimization of acoustical properties of multi-layered materials used in the automotive industry requires a good understanding and characterization of the various component layers. This is a particular concern in the case of headliners where performance must be balanced with packing space demands. These composite structures when used with flexible urethane foams provide good stiffness and light weight, but their acoustic performance can be sub-optimal. Measurements undertaken with poro-elastic high airflow resistivity foams highlighted frame resonances which, if exploited, might significantly improve the acoustical performance of this system. A new modeling technique based on a pseudo-macroscopic description of the poro-elastic material in the framework of a four-pole network will be used to explain these frame resonances. This formulation exploits the electro-acoustical analogy in transmission line theory. The description of the poro-elastic material is based on a global description of the structure superposed on the fluid. Under normal incidence, each phase is assumed to support a compressional wave. In the present study, emphasis will be put on tools to tune these systems to a specific range of frequency and comparison of predictions and measurements will be presented to assess the validity of the modeling technique.
机译:汽车工业中使用的多层材料的声学特性优化需要良好的理解和表征各种组件层。这是在头条内部的情况下特别关注,其中性能必须通过包装空间需求平衡。与柔性聚氨酯泡沫一起使用时,这些复合结构提供了良好的刚度和重量轻,但它们的声学性能可以是次优的。采用Poro-Elastic High气流电阻率泡沫进行的测量突出显示框架共振,如果利用,这可能会显着提高该系统的声学性能。一种基于四极网络框架中的孔弹性材料的伪宏观描述的新建模技术将用于解释这些框架共振。该配方利用传输线理论中的电声学类比。孔弹性材料的描述基于叠加在流体上的结构的全局描述。在正常发生率下,假设每个阶段支持压缩波。在本研究中,重点将被提出将这些系统调整到特定频率范围的特定频率范围,并且将提出预测和测量的比较来评估建模技术的有效性。

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