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ACOUSTIC BLANKET PERFORMANCE EVALUATION USING REVERBERATION TIME TEST METHOD

机译:基于重试时间测试方法的声学毯性能评估

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Boeing Evolved Expendable Launch Systems has developed a new 5-meter payload fairing for its Delta IV launch vehicle. This composite bisector payload fairing represents a design that incorporated new acoustic insulation blanket materials. The new acoustic blanket was selected to provide improvements in acoustic noise reduction and payload protection. Extensive laboratory experiments were performed during the Delta IV launch vehicle qualification test program to quantify noise-reduction characteristic of the fairing acoustic insulation materials. Many laboratory microphones were installed internal and external to the fairing. Reverberation time tests were conducted by installing several loudspeakers within the fairing cavity. Using a broadband random noise generator and audio power amplifier, the loudspeakers were excited and microphone data collected. Microphone data collected were further reduced to sound intensity (1/3-octave band SPL) versus time data. Sound decay curves were generated and reverberation times computed. This paper discusses the test methods, test apparatus, and test article for the reverberation time test.
机译:波音公司发展的消耗性发射系统已经为其Delta IV发射器开发了一种新型的5米有效载荷整流罩。这种复合的平分线有效载荷整流罩是一种结合了新型隔音毯材料的设计。选择了新的隔音毯,以改善隔音效果和有效载荷保护。在Delta IV运载火箭鉴定测试计划期间进行了广泛的实验室实验,以量化整流罩隔音材料的降噪特性。在整流罩的内部和外部都安装了许多实验室麦克风。通过在整流罩腔内安装几个扬声器进行混响时间测试。使用宽带随机噪声发生器和音频功率放大器,扬声器被激励,麦克风数据被收集。与时间数据相比,收集到的麦克风数据进一步降低到声音强度(1/3倍频程SPL)。产生了声音衰减曲线并计算了混响时间。本文讨论了混响时间测试的测试方法,测试设备和测试文章。

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