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Identification of Material Properties of Orthotropic Elastic Cylinders Immersed in Fluid Using Vibroacoustic Techniques

机译:利用振动声波技术鉴定浸入流体中的正交各向异性弹性圆柱体的材料特性

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摘要

A numerical study is presented to show the potential for using vibroacoustic-based experiments to identify elastic material properties of orthotropic cylindrical vessels immersed in fluids. Sensitivity analyses and a simulated inverse problem are shown to quantify the potential for material characterization through the use of acoustic emissions. For comparison purposes, the analyses are also shown with the normal component of the velocity at the surface of the cylinder as the measured response in place of the acoustic pressure. The simulated experiment consisted of an orthotropic cylinder immersed in water with an impact force applied to the surface of the cylinder. The material parameters of the cylinder considered in the analyses were the circumferential and longitudinal elastic moduli, and the in-plane shear modulus. The velocity response is shown to provide sufficient information for characterizing all three moduli from a single experiment. Alternatively, the acoustic pressure response is shown to provide sufficient information for characterizing only the two elastic moduli from a single experiment. The analyses show that the acoustic pressure response does not have sufficient sensitivity to the in-plane shear modulus for characterization purposes.
机译:提出了一个数值研究,以显示使用基于振动声的实验来识别浸在流体中的正交各向异性圆柱形容器的弹性材料特性的潜力。显示了灵敏度分析和模拟逆问题,从而通过使用声发射来量化材料表征的潜力。为了进行比较,还显示了分析结果,并以汽缸表面速度的法向分量作为测得的响应来代替声压。模拟实验由浸在水中的正交各向异性圆柱体组成,并向圆柱体表面施加冲击力。分析中考虑的圆柱体的材料参数为周向和纵向弹性模量以及面内剪切模量。显示的速度响应可提供足够的信息来表征单个实验中的所有三个模量。替代地,示出了声压响应以提供足够的信息来表征来自单个实验的仅两个弹性模量。分析表明,出于表征目的,声压响应对面内剪切模量没有足够的敏感性。

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