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A Relationship between Frequency Dependent Ultrasonic Attenuation and Porosity in Composite Laminates

机译:复合材料层合板中随频率变化的超声衰减与孔隙率的关系

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摘要

The detrimental effects of porosity on material strength are well known. The work of Hsu, Rose, and Adler[l] provides a means of estimating the volume fraction of pores and the average pore radius in isotropic elastic media from the value of frequency at which the attenuation coefficient becomes frequency independent and the magnitude of the attenuation coefficient at that plateau. Quantitative results for the isotropic case depend on numerical factors obtained by Gubernatis et al. [2] which are functions of the ratio of the transverse to longitudinal sound velocities, i.e., on the Poisson ratio. Mobley et al. [3] have tested these theories by making measurments of attenuation covering a frequency range that extended well into the frequency independent plateau. The experimental results of these investigators suggest that the theoretical results obtained by Rose et al. are qualitatively correct even though some of the features of wave propagation in layered, anisotropic media are not explicitly incorporated into the scattering model.
机译:孔隙率对材料强度的有害影响是众所周知的。 Hsu,Rose和Adler的工作[1]提供了一种方法,可以根据衰减系数变得与频率无关的频率值和衰减幅度来估算各向同性弹性介质中的孔体积分数和平均孔半径该高原的系数。各向同性情况的定量结果取决于Gubernatis等人获得的数值因子。 [2]是横向声速与纵向声速之比即泊松比的函数。 Mobley等。文献[3]通过测量覆盖频率范围的衰减来测试了这些理论,该频率范围很好地扩展到了与频率无关的平稳期。这些研究者的实验结果表明,Rose等人获得的理论结果。即使没有将层状各向异性介质中波传播的某些特征明确地纳入散射模型中,定性还是正确的。

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