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Chamber-core structures for fairing acoustic mitigation

机译:腔芯结构,用于减轻声学干扰

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Extreme noise and vibration levels at lift-off and during ascent can damage sensitive payload components. Recently, the Air Force Research Laboratory, Space Vehicles Directorate has investigated a composite structure fabrication approach, called chamber-core, for building payload fairings. Chamber-core offers a strong, lightweight structure with inherent noise attenuation characteristics. It uses one-inch square axial tubes that are sandwiched between inner and outer face-sheets to form a cylindrical fairing structure. These hollow tubes can be used as acoustic dampers to attenuate the amplitude response of low frequency acoustic resonances within the fairing's volume. A cylindrical, graphite-epoxy chamber-core structure was built to study noise transmission characteristics and to quantify the achievable performance improvement. The cylinder was tested in a semi-reverberant acoustics laboratory using bandlimited random noise at sound pressure levels up to 110 dB. The performance was measured using external and internal microphones. The noise reduction was computed as the ratio of the spatially averaged external response to the spatially averaged interior response. The noise reduction provided by the chamber-core cylinder was measured over three bandwidths, 20 Hz to 500 Hz, 20 Hz to 2000 Hz, and 20 Hz to 5000 Hz. For the bare cylinder with no acoustic resonators, the structure provided approximately 13 dB of attenuation over the 20 Hz to 500 Hz bandwidth. With the axial tubes acting as acoustic resonators at various frequencies over the bandwidth, the noise reduction provided by the cylinder increased to 18.2 dB, an overall increase of 4.8 dB over the bandwidth. Narrow-band reductions greater than 10 dB were observed at specific low frequency acoustic resonances. This was accomplished with virtually no added mass to the composite cylinder.
机译:起飞和上升期间的极端噪音和振动水平可能会损坏敏感的有效载荷组件。最近,美国航天飞机局空军研究实验室研究了一种用于建造有效载荷整流罩的复合结构制造方法,称为腔室芯。腔室芯具有坚固,轻巧的结构,具有固有的噪声衰减特性。它使用一个1英寸的方形轴向管,该轴向管夹在内部和外部面板之间,以形成圆柱形的整流罩结构。这些中空管可用作消音器,以减弱整流罩内的低频声共振的幅度响应。建立了圆柱状的石墨-环氧腔芯结构,以研究噪声的传输特性并量化可实现的性能改进。该圆柱体在半混响声学实验室中使用带限随机噪声在高达110 dB的声压水平下进行了测试。使用外部和内部麦克风测量性能。降噪计算为空间平均外部响应与空间平均内部响应之比。在三个带宽(20 Hz至500 Hz,20 Hz至2000 Hz和20 Hz至5000 Hz)上测量了腔室芯圆柱体提供的降噪效果。对于没有声谐振器的裸圆柱,该结构在20 Hz至500 Hz带宽上提供了约13 dB的衰减。轴向管在整个带宽上以各种频率充当声谐振器时,圆柱体所提供的噪声降低增加到18.2 dB,整个带宽上增加了4.8 dB。在特定的低频声共振下,观察到的窄带衰减大于10 dB。这几乎没有增加复合圆柱体的质量。

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