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Guided wave based detection of damage in honeycomb core sandwich structures

机译:基于导波的蜂窝芯夹心结构损伤检测

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We report on the Lamb wave type guided wave propagation in honeycomb core sandwich structures. An experimental study supported by theoretical evaluation of the guided wave characteristics is presented that proves the potential of Lamb wave type guided wave for detection of damage in sandwich structures. A sandwich panel is fabricated with planar dimension of 600 mm x 600 mm, having a core thickness of 7 mm, cell size of 5 mm and 0.1 mm thick aluminum face sheets. Thin piezoelectric patch actuators and sensors are used to excite and sense a frequency band limited guided wave with a central frequency. A linear phased array of piezoelectric patch actuators is used to achieve higher signal strength and directivity. Group velocity dispersion curves and corresponding frequency response of sensed signal are obtained experimentally. Linearity between the excitation signal amplitude and the corresponding sensed signal amplitude is found for certain range of parameters. The nature of damping present in the sandwich panel is monitored by measuring the sensor signal amplitude at various different distances measured from the center of the linear phased array. Indentation and low velocity impact induced damages of increasing diameter covering several honeycomb cells are created. Crushing of honeycomb core with rupture of face sheet is observed while introducing the damage. The damages are then detected experimentally by pitch-catch interrogation with guided waves and wavelet transform of the sensed signal. Signal amplitudes are analyzed for various different sizes of damages to differentiate the damage size/severity. Monotonic changes in the sensor signal amplitude due to increase in the damage size has been established successfully. With this approach it is possible to locate and monitor the damages with the help of phased array and by tracking the wave packets scattered from the damages.
机译:我们报告了在蜂窝芯夹心结构中的兰姆波型导波传播。进行了由导波特性的理论评估支持的实验研究,证明了兰姆波型导波在检测夹层结构损伤中的潜力。制造的夹芯板的平面尺寸为600 mm x 600 mm,芯厚度为7 mm,单元尺寸为5 mm,铝面板的厚度为0.1 mm。薄压电贴片致动器和传感器用于激发和感测具有中心频率的频带受限的导波。压电贴片致动器的线性相控阵用于获得更高的信号强度和方向性。实验获得了群速度色散曲线和相应的频率响应信号。对于一定范围的参数,发现激励信号幅度和相应的感测信号幅度之间的线性。通过测量从线性相控阵中心测得的各种不同距离处的传感器信号幅度,可以监视夹心板中存在的阻尼的性质。压痕和低速冲击引起的直径增加的损害覆盖了多个蜂窝单元。在引入损伤的同时,观察到蜂窝状芯随着面板的破裂而破碎。然后,通过利用引导波进行音高捕捉查询和感测信号的小波变换,通过实验检测损坏。针对各种不同大小的损伤分析信号幅度,以区分损伤的大小/严重性。已经成功建立了由于损伤大小增加而引起的传感器信号幅度的单调变化。通过这种方法,可以借助相控阵并通过跟踪从损伤散布的波包来定位和监视损伤。

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