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The propagation characteristics of the plate modes of acoustic emission waves in thin aluminum plates and thin graphite/epoxy composite plates and tubes

机译:声发射波的板模在薄铝板和薄石墨/环氧复合板和管中的传播特性

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摘要

Acoustic emission was interpreted as modes of vibration in plates. Classical plate theory was used to predict dispersion curves for the two fundamental modes and to calculate the shapes of flexural waveforms produced by vertical step function loading. There was good agreement between theoretical and experimental results for aluminum. Composite materials required the use of a higher order plate theory (Reissner-Mindlin) to get good agreement with the measured velocities. Four composite plates with different laminate stacking sequences were studied. The dispersion curves were determined from phase spectra of the time dependent waveforms. Plate modes were shown to be useful for determining the direction of source motion. Aluminum plates were loaded by breaking a pencil lead against their surface. By machining slots at angles to the plane of a plate, the direction in which the force acted was varied. Changing the source motion direction produced regular variations in the waveforms. To demonstrate applicability beyond simple plates, waveforms produced by lead breaks on a thin walled composite tube were also shown to be interpretable as plate modes. The tube design was based on the type of struts proposed for Space Station Freedom's trussed structures.
机译:声发射被解释为板中的振动模式。经典的板理论被用来预测两种基本模式的色散曲线,并计算由垂直阶跃函数加载产生的挠曲波形的形状。铝的理论和实验结果之间有很好的一致性。复合材料需要使用更高阶的板理论(Reissner-Mindlin)才能与测得的速度取得良好的一致性。研究了四种具有不同层压板堆叠顺序的复合板。从时间相关波形的相位谱确定色散曲线。平板模式显示对于确定源运动的方向很有用。通过将铅笔芯折向铝板表面来加载铝板。通过加工与平板平面成一定角度的缝隙,可以改变作用力的方向。改变源运动方向会产生规则的波形变化。为了证明其适用于简单板以外,由薄壁复合管上的引线断裂产生的波形也被解释为板模式。管子的设计基于为Space Station Freedom的桁架结构建议的支柱类型。

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  • 作者

    Prosser, William H.;

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  • 年度 1991
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