首页> 外文期刊>Journal of mechanics of materials and structures >PROPAGATION OF WAVES IN AN INCOMPRESSIBLE TRANSVERSELY ISOTROPIC ELASTIC SOLID WITH INITIAL STRESS: BIOT REVISITED
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PROPAGATION OF WAVES IN AN INCOMPRESSIBLE TRANSVERSELY ISOTROPIC ELASTIC SOLID WITH INITIAL STRESS: BIOT REVISITED

机译:波在具有初始应力的不可压横向各向同性弹性固体中的传播:重新讨论了BIOT

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摘要

In this paper, the general constitutive equation for a transversely isotropic hyperelastic solid in the presence of initial stress is derived, based on the theory of invariants. In the general finite deformation case for a compressible material this requires 18 invariants (17 for an incompressible material). The equations governing infinitesimal motions superimposed on a finite deformation are then used in conjunction with the constitutive law to examine the propagation of both homogeneous plane waves and, with the restriction to two dimensions, Rayleigh surface waves. For this purpose we consider incompressible materials and a restricted set of invariants that is sufficient to capture both the effects of initial stress and transverse isotropy. Moreover, the equations are specialized to the undeformed configuration in order to compare with the classical formulation of Biot. One feature of the general theory is that the speeds of homogeneous plane waves and surface waves depend nonlinearly on the initial stress, in contrast to the situation of the more specialized isotropic and orthotropic theories of Biot. The speeds of (homogeneous plane) shear waves and Rayleigh waves in an incompressible material are obtained and the significant differences from Biot's results for both isotropic and transversely isotropic materials are highlighted with calculations based on a specific form of strain-energy function.
机译:本文基于不变式理论,推导了存在初始应力时横向各向同性超弹性固体的一般本构方程。在可压缩材料的一般有限形变情况下,这需要18个不变式(不可压缩材料为17个)。然后,将控制无限大运动叠加在有限变形上的方程式与本构定律一起使用,以检验均一的平面波的传播,并在二维约束下检查瑞利表面波。为此,我们考虑了不可压缩的材料和一组有限的不变式,它们足以捕获初始应力和横向各向同性的影响。此外,这些方程专门用于未变形的构造,以便与Biot的经典公式进行比较。一般理论的一个特征是,与比奥特更为各向同性和正交各向异性的理论相比,均匀平面波和表面波的速度非线性地取决于初始应力。获得了不可压缩材料中(均匀平面)剪切波和瑞利波的速度,并基于特定形式的应变能函数,通过计算突出了与Biot对各向同性和横向各向同性材料的显着差异。

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