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Reconstruction of inclusions in solids using ultrasonic Born inversion

机译:超声波恩反演重建固体中的夹杂物

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Voids and inclusions in elastic solids are characterized experimentally using scattered ultrasonic waves. The flaws are reconstructed using a one‐dimensional elastic wave inverse scattering algorithm based on the Born–Neuman expansion. This method emphasizes the role of low and intermediate frequency longitudinal waves. The utility of the inverse Born approximation is tested for several new circumstances. First the algorithm is tested for pitch‐catch (bistatic) geometries. Secondly the effects of resonant excitation of the scatterer on flaw characterization are measured for several spherical flaws. The third and major result shows that the one‐dimensional algorithm can be used to determine the size, shape and orientation of nearly ellipsoidal flaws when access angle is limited. The effects of varying access aperture on the reconstruction are reported. Another common experimental limitation in flaw characterization arises from interferences of the flaw signal with nearby surfaces. We briefly report that the same algorithm was successful in inverting several near surface flaws. In particular, we have successfully reconstructed, in the bulk of the sample, an approximately prolate spheroidal inclusion imbedded in plastic, an oblate spheroidal void in titanium, and in the near surface region an approximately prolate spheroidal inclusion.
机译:弹性固体中的空隙和夹杂物使用散射超声波进行实验表征。使用基于Born–Neuman展开的一维弹性波逆散射算法重建缺陷。该方法强调低频和中频纵波的作用。 Born逆近似的效用在几种新情况下进行了测试。首先,测试算法的音高捕捉(双静态)几何形状。其次,针对几个球形缺陷,测量了散射体的共振激发对缺陷特征的影响。第三个也是主要的结果表明,在限制进入角度的情况下,可以使用一维算法确定近椭圆形缺陷的大小,形状和方向。报告了改变进入孔径对重建的影响。缺陷表征的另一个常见实验限制是缺陷信号对附近表面的干扰。我们简短地报告说,相同的算法成功地反转了多个近表面缺陷。特别是,我们已经成功地在样品的大部分中重建了嵌入塑料中的近似扁球形的球状夹杂物,钛中的扁球形球状空隙以及在近表面区域中的近似扁形球状夹杂物。

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    《Journal of Applied Physics》 |1984年第1期|P.162-168|共7页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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