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Low-frequency measurements and predictions of the structural-acoustic properties of the INCE standard T-beam structure

机译:低频测量和INCE标准T型梁结构的结构声学特性预测

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This paper assembles and examines a collection of measurements and predictions of the low-frequency (< 1 kHz) structural-acoustic behavior of the INCE standard T-beam made by several investigators using different techniques, and in some cases, different hardware. The T-beam is one of a series of INCE standard test structures, which includes ribbed panels and flexible panels coupled to rigid walled enclosures. The assembled methods and data are examined to provide guidance regarding procedures for accurate measurements and modeling of connected beam structures. Modes, power input spectra, power dissipation in the legs of the T-beam, and structure-borne power through the legs are presented, all using consistent T-beam properties, for the first time. Finite element (beam and solid element models), analytic wave-based, and mobility power flow predictions compare very well to measurements made on two nominally identical T-beams. Some discrepancies between the various predictions and the measured data remain unresolved, however, and it appears that the key issue in predicting accurate structure-borne power flow behavior in connected beam structures is how best to represent the joints, which need to be modeled as finite sized connections between the legs. One of the key issues in making accurate structure-borne power measurements is careful alignment of the driving hardware (usually shakers) to the test structure to avoid inadvertently exciting resonances not of interest. Also, care must be taken to ensure precise phase calibration between sensors and to account for mass loading effects of shakers and other instrumentation hardware when comparing measured and predicted datasets. (C) 2002 Institute of Noise Control Engineering. [References: 32]
机译:本文收集并研究了由几名调查人员使用不同的技术(在某些情况下使用不同的硬件)制作的INCE标准T型梁的低频(<1 kHz)低频结构声学行为的测量值和预测值的集合。 T型梁是一系列INCE标准测试结构之一,其中包括带肋的面板和连接到刚性壁罩的柔性面板。检查组装的方法和数据,以提供有关连接梁结构的精确测量和建模过程的指导。首次展示了模式,功率输入频谱,T形梁支路中的功率耗散以及通过支路的固体声功率,所有这些都首次使用了一致的T束特性。有限元(梁和实体元模型),基于分析波的和移动性潮流预测与在两个名义上相同的T型梁上进行的测量相比非常好。各种预测和测量数据之间的某些差异仍未解决,但是,似乎似乎在预测连接梁结构中精确的结构传力行为的关键问题是如何最好地表示节理,需要将其建模为有限元模型。腿之间的大小连接。进行精确的基于结构的功率测量的关键问题之一是将驱动硬件(通常为振动器)与测试结构仔细对齐,以避免无意中引起不必要的共振。此外,在比较测量数据集和预测数据集时,必须注意确保传感器之间的精确相位校准,并考虑振动器和其他仪器硬件的质量负载效应。 (C)2002噪声控制工程研究所。 [参考:32]

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