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分数阶粘弹性板上的瑞利-兰姆波传播。

Rayleigh-Lamb wave propagation on a fractional order viscoelastic plate.

机构信息

Department of Mechanical & Industrial Engineering, University of Illinois at Chicago, Chicago, Illinois 60607, USA.

出版信息

J Acoust Soc Am. 2011 Feb;129(2):1036-45. doi: 10.1121/1.3531936.

Abstract

A previous study of the authors published in this journal focused on mechanical wave motion in a viscoelastic material representative of biological tissue [Meral et al., J. Acoust. Soc. Am. 126, 3278-3285 (2009)]. Compression, shear and surface wave motion in and on a viscoelastic halfspace excited by surface and sub-surface sources were considered. It was shown that a fractional order Voigt model, where the rate-dependent damping component that is dependent on the first derivative of time is replaced with a component that is dependent on a fractional derivative of time, resulted in closer agreement with experiment as compared with conventional (integer order) models, such as those of Voigt and Zener. In the present study, this analysis is extended to another configuration and wave type: out-of-plane response of a viscoelastic plate to harmonic anti-symmetric Lamb wave excitation. Theoretical solutions are compared with experimental measurements for a polymeric tissue mimicking phantom material. As in the previous configurations the fractional order modeling assumption improves the match between theory and experiment over a wider frequency range. Experimental complexities in the present study and the reliability of the different approaches for quantifying the shear viscoelastic properties of the material are discussed.

摘要

作者之前在本刊发表的一项研究[Meral 等人,J. Acoust. Soc. Am. 126, 3278-3285 (2009)],重点研究了一种黏弹性材料中的机械波动,这种材料是生物组织的代表。本文研究了黏弹性半空间中的压缩、剪切和表面波运动,以及表面和次表面源激发的黏弹性半空间中的表面波运动。结果表明,分数阶 Voigt 模型(其中与时间的一阶导数相关的时变阻尼部分被替换为与分数阶导数相关的部分)与传统(整数阶)模型(如 Voigt 和 Zener 模型)相比,与实验结果的吻合度更高。在本研究中,这种分析扩展到另一种配置和波类型:黏弹性板对谐波反对称 Lamb 波激励的离面响应。针对聚合物组织模拟体材料,对理论解与实验测量结果进行了比较。与之前的配置一样,分数阶建模假设在更宽的频率范围内提高了理论与实验之间的匹配程度。本文讨论了实验的复杂性以及不同方法量化材料剪切黏弹性性质的可靠性。

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