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外加应力对各向异性板中导波的相速度和群速度的影响。

The effect of applied stress on the phase and group velocity of guided waves in anisotropic plates.

作者信息

Dubuc Brennan, Ebrahimkhanlou Arvin, Salamone Salvatore

机构信息

Department of Civil, Architectural and Environmental Engineering, University of Texas at Austin, 301 E East Dean Keeton Street, Austin, Texas 78712, USA.

出版信息

J Acoust Soc Am. 2017 Dec;142(6):3553. doi: 10.1121/1.5016969.

Abstract

This paper presents an analytical formulation for the phase and group velocity of acoustoelastic guided waves in anisotropic plates. Uniform in-plane applied stress is considered, with both arbitrary propagation and stress directions. An expression for the energy velocity in a stressed anisotropic plate is derived, from which the group velocity is computed. Since the wavefront and group velocity directions generally differ, the deviation angle between the two is also studied. A method is proposed for verifying the consistency of the formulation, based on the correspondence between a direct and an indirect formulation. Analytical results are presented for a unidirectional fiber-reinforced graphite/epoxy composite plate. The plate is considered homogeneous for large wavelength to fiber diameter ratios. Results for the phase velocity, group velocity, and deviation angle are presented for two uniaxial applied loading cases. These are used to study the effect of stress for various propagation and stress directions. The linearity of the deviation angle with respect to stress is also demonstrated. Exact correspondence between the direct and indirect formulations is observed, which verifies consistency. The importance of accounting for shear strain in the indirect formulation is also demonstrated, which has not been noted in previous guided wave studies.

摘要

本文提出了一种用于分析各向异性板中声弹性导波相速度和群速度的公式。考虑了均匀的面内施加应力,传播方向和应力方向均为任意方向。推导了受应力各向异性板中能量速度的表达式,并据此计算群速度。由于波前方向和群速度方向通常不同,因此还研究了两者之间的偏差角。基于直接公式和间接公式之间的对应关系,提出了一种验证该公式一致性的方法。给出了单向纤维增强石墨/环氧树脂复合板的分析结果。对于大波长与纤维直径比的情况,该板被视为均匀介质。给出了两种单轴施加载荷情况下的相速度、群速度和偏差角结果。这些结果用于研究不同传播方向和应力方向下应力的影响。还证明了偏差角相对于应力的线性关系。观察到直接公式和间接公式之间的精确对应关系,从而验证了一致性。还证明了在间接公式中考虑剪切应变的重要性,这在以前的导波研究中尚未被提及。

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