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The reflection of ultrasound from partially contacting rough surfaces

机译:超声波从部分接触粗糙表面的反射

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摘要

Ultrasound is commonly used to detect and size cracks in a range of engineering components. Modeling techniques are well established for smooth and open cracks. However, real cracks are often rough (relative to the ultrasonic wavelength) and closed due to compressive stress. This paper describes an investigation into the combined effects of crack face roughness and closure on ultrasonic detectability. A contact model has been used to estimate the size and shape of scatterers (voids) at the interface of these rough surfaces when loaded. The response of such interfaces to excitation with a longitudinal ultrasonic pulse over a wide range of frequencies has been investigated. The interaction of ultrasound with this scattering interface is predicted using a finite-element model and good agreement with experiments on rough surfaces is shown. Results are shown for arrays of equi-sized scatterers and a distribution of scatterer sizes. It is shown that the response at high frequencies is dependent on the size, shape, and distribution of the scatterers. It is also shown that the finite-element results depart from the mass-spring model predictions when the product of wave number and scatterer half-width is greater than 0.4. (C) 2005 Acoustical Society of America.
机译:超声波通常用于检测一系列工程组件中的裂缝并确定其大小。建模技术已经很好地建立了平滑和开放的裂缝。但是,真正的裂纹通常较粗糙(相对于超声波波长),并且由于压缩应力而闭合。本文描述了裂纹表面粗糙度和闭合对超声可探测性的综合影响的研究。接触模型已被用来估计加载时这些粗糙表面的界面处的散射体(空隙)的大小和形状。已经研究了这种界面对在宽频率范围内用纵向超声脉冲激发的响应。使用有限元模型预测了超声波与该散射界面的相互作用,并显示了与粗糙表面上的实验的良好一致性。显示了等尺寸散射体阵列和散射体大小分布的结果。结果表明,高频下的响应取决于散射体的大小,形状和分布。还表明,当波数与散射半宽度的乘积大于0.4时,有限元结果与质量弹簧模型的预测背离。 (C)2005年美国声学学会。

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