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Modal Analysis and Characterization of Mounting Cart Used for Testing in the Combined Environment Acoustic Chamber

机译:组合环境声腔中使用安装推车的模态分析与表征

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The ability to simulate the aeroacoustic and thermoacoustic loading typically experienced by space access vehicles and hypersonic flight vehicles is accomplished through the use of a progressive wave tube (PWT) housed in the Combined Environment Acoustic Chamber (CEAC). Simulating these types of acoustic loading requires the test article be mounted flush with the wall of the PWT, exposing the test article to the propagating pressure wave. This mounting capability is achieved through the use of a strong-back fixture, referred to in this work as a test cart, whose initial design was to withstand static pressure loading on the front face where a test article is mounted. However, this test cart experiences dynamic loading during these acoustic tests. Preliminary modal evaluations of test articles mounted to the cart have indicated that the test cart has several natural frequencies in the testing frequency range of interest (0-1000 Hz). The interaction between the test cart and test article is undesirable because it contradicts the analytical rigid boundary conditions and could also lead to unrealistic failure as a result of over excitation of the specimen if the same mode exists in the test cart and test article. The goal of this work is to characterize the test cart using experimental modal analysis and evaluate the need for modification or complete redesign of the test cart to eliminate modes below 1000 Hz and maintain the intended functionality of the cart.
机译:来模拟空气声学和热声载荷通常由空间访问车辆和超音速飞行车辆所经历的能力是通过使用容纳在综合环境声室(CEAC)前进波管(PWT)来完成的。模拟这些类型的声加载需要用PWT的壁安装测试物品,将测试制品暴露于传播压力波。这种安装能力是通过使用强背夹具来实现的,作为测试推车,其初始设计是在安装测试制品的前脸上承受静压负载。但是,该测试车在这些声学测试期间经历动态加载。安装到推车的测试制品的初步模态评估表明,测试推车在测试频率范围内有几种自然频率(0-1000Hz)。测试车和测试品之间的相互作用是不可取的,因为它违背了分析刚性边界条件,并且还可能会导致不切实际的失败仿佛同一模式在测试车和测试物品存在试样上激发的结果。这项工作的目标是使用实验模态分析表征测试车,并评估修改或完全重新设计测试车以消除1000 Hz的模式,并维持推车的预期功能。

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