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Crack detection using nonlinear acoustics and piezoceramic transducers-instantaneous amplitude and frequency analysis

机译:使用非线性声学和压电陶瓷换能器的裂纹检测-瞬时振幅和频率分析

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This paper investigates the nonlinear vibro-acoustic modulation technique for damage detection in metallic structures. Surface-bonded, low-profile piezoceramic actuators are used to introduce a high-frequency ultrasonic wave and low-frequency modal vibration into an aluminium specimen. The response of the vibro-acoustic interaction is monitored by a third low-profile piezoceramic transducer. In contrast to previous applications analysing the response in the frequency domain, current investigations focus on the instantaneous characteristics of the response using the Hilbert-Huang transform. The study shows that both modulations, i.e.amplitude and frequency, are present in the acoustical responses when the aluminium plate is cracked. The intensity of amplitude modulation correlates far better with crack lengths than the intensity of frequency modulations.
机译:本文研究了用于金属结构损伤检测的非线性振动声调制技术。表面结合的薄型压电陶瓷驱动器用于将高频超声波和低频模态振动引入铝样品。振动声相互作用的响应由第三个薄型压电陶瓷传感器监测。与以前的应用在频域上分析响应相比,当前的研究集中在使用希尔伯特-黄变换的响应的瞬时特性上。研究表明,当铝板破裂时,两个响应即振幅和频率都存在于声学响应中。振幅调制的强度与裂纹长度的相关性远好于频率调制的强度。

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