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Plate mode velocities in graphite/epoxy plates

机译:石墨/环氧树脂板中的板模速度

摘要

Measurements of the velocities of the extensional and flexural plate modes were made along three directions of propagation in four graphite/epoxy composite plates. The acoustic signals were generated by simulated acoustic emission events (pencil lead breaks or Hsu-Neilson sources) and detected by by broadband ultrasonic transducers. The first arrival of the extensional plate mode, which is nondispersive at low frequencies, was measured at a number of different distances from the source along the propagation direction of interest. The velocity was determined by plotting the distance versus arrival time and computing its slope. Because of the large dispersion of the flexural mode, a Fourier phase velocity technique was used to characterize this mode. The velocity was measured up to a frequency of 160 kHz. Theoretical predictions of the velocities of these modes were also made and compared with experimental observations. Classical plate theory yields good agreement with the measured extensional velocities. For predictions of the dispersion of the flexural mode, Mindlin plates theory, which includes the effects of shear deformation and rotatory inertia was shown to give better agreement with the experimental measurements.
机译:在四个石墨/环氧复合材料板中,沿着三个传播方向进行了拉伸板和挠性板模速度的测量。声波信号是通过模拟声波发射事件(铅笔引线断裂或Hsu-Neilson源)生成的,并由宽带超声换能器检测到。沿感兴趣的传播方向在距震源许多不同的距离处测量了延伸板模式的首次到达,该模式在低频不分散。通过绘制距离与到达时间的关系并计算其斜率来确定速度。由于弯曲模式的分散程度大,因此使用了傅里叶相速度技术来表征该模式。在最高160 kHz的频率下测量速度。还对这些模式的速度进行了理论预测,并将其与实验观察结果进行了比较。经典板理论与测得的延伸速度具有良好的一致性。为了预测挠曲模态的分散性,Mindlin板理论(包括剪切变形和旋转惯性的影响)被证明与实验测量值具有更好的一致性。

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    Prosser W. H.; Gorman M. R.;

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  • 年度 1994
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