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Vibro-acoustic modulation–based damage identification in a composite skin–stiffener structure

机译:复合材料加劲皮结构中基于振动声调制的损伤识别

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摘要

Vibro-acoustic modulation–based damage identification relies on the modulation of a high-frequency carrier signal by an intenser low-frequency vibration signal due to damage-induced structural nonlinearities. A time domain analysis of the vibro-acoustic modulation phenomena was presented at multiple spatial locations in an impact damaged composite skin–stiffener structure. The instantaneous amplitude and frequency of the carrier velocity response were extracted to analyze the intermodulation effects between the two excitation signals. Increased amplitude modulations at the damaged region revealed the presence, location, and length of the skin–stiffener damage. The damage hardly modulated the frequency of the carrier response. This difference in behavior was attributed to the nonlinear skin–stiffener interaction introduced by the periodic opening and closing of the damage, according to earlier research by authors on the same structure. A parametric study showed that the amplitude and phase of the amplitude modulation are dependent on the selected carrier excitation frequency, and hence the high-frequency wave field that is introduced. This work demonstrates not only the potential but also the complexity of the vibro-acoustic modulation based damage identification approach.
机译:基于振动声调制的损伤识别依靠损伤引起的结构非线性,通过更强烈的低频振动信号对高频载波信号进行调制。振动声复合现象的时域分析是在冲击破坏的复合蒙皮增强结构中的多个空间位置进行的。提取载波速度响应的瞬时幅度和频率,以分析两个激励信号之间的互调效果。受损部位振幅调制的增加表明存在皮肤硬化剂,其位置和长度。损坏几乎不会调制载波响应的频率。作者早先对同一结构的研究表明,这种行为差异是由于损伤的周期性开启和闭合所引起的非线性蒙皮-增强剂相互作用。参数研究表明,调幅的幅度和相位取决于所选的载波激励频率,因此取决于所引入的高频波场。这项工作不仅展示了基于振动声调制的损伤识别方法的潜力,还展示了其复杂性。

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