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Ultrasonic Spectroscopy of Developmental Composite Rotors

机译:研制复合转子的超声光谱

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摘要

Multilayered composite materials are being studied extensively for implementation in flywheel systems for the International Space Station (ISS). Rotor standard sections have been developed to determine damage tolerance levels of the multilayered composite materials in these flywheel systems. Four such rotor sections with simulated delaminations, foreign material inserts, and notches were investigated with a recently developed ultrasonic Spectroscopy technique. The ultrasonic system employs a continuous swept sine waveform and performs an FFT on the frequency spectrum. In addition, the system is capable of equalizing the amount of energy at each frequency. Equalization of the frequency spectrum, along with interpretation of the second FFT aids in the evaluation of the spectrum resonance spacing, or fundamental frequency. The ultrasonic responses from defect free regions of the multilayered rotor sections are compared with responses from regions with simulated delaminations, foreign material inserts, and notches to establish the potential of this nondestructive evaluation (NDE) method for the evaluation of flywheel rotor systems.
机译:多层复合材料正在广泛研究中,以用于国际空间站(ISS)的飞轮系统。已经开发了转子标准型材,以确定这些飞轮系统中多层复合材料的损伤耐受水平。使用最新开发的超声光谱技术研究了四个带有模拟分层,异物插入和缺口的此类转子部分。超声系统采用连续扫频正弦波形,并在频谱上执行FFT。另外,该系统能够均衡每个频率下的能量。频谱均衡以及第二个FFT的解释有助于评估频谱谐振间隔或基频。将来自多层转子部分的无缺陷区域的超声响应与具有模拟分层,异物插入物和凹口的区域的响应进行比较,以建立这种无损评估(NDE)方法用于评估飞轮转子系统的潜力。

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