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A modified formulation of quasi-linear viscoelasticity for transversely isotropic materials under finite deformation

机译:横观各向同性材料有限变形下准线性粘弹性的修正公式

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摘要

The theory of quasi-linear viscoelasticity (QLV) is modified and developed for transversely isotropic (TI) materials under finite deformation. For the first time, distinct relaxation responses are incorporated into an integral formulation of nonlinear viscoelasticity, according to the physical mode of deformation. The theory is consistent with linear viscoelasticity in the small strain limit and makes use of relaxation functions that can be determined from small-strain experiments, given the time/deformation separability assumption. After considering the general constitutive form applicable to compressible materials, attention is restricted to incompressible media. This enables a compact form for the constitutive relation to be derived, which is used to illustrate the behaviour of the model under three key deformations: uniaxial extension, transverse shear and longitudinal shear. Finally, it is demonstrated that the Poynting effect is present in TI, neo-Hookean, modified QLV materials under transverse shear, in contrast to neo-Hookean elastic materials subjected to the same deformation. Its presence is explained by the anisotropic relaxation response of the medium.
机译:准线性粘弹性(QLV)理论经过修改和发展,适用于有限变形下的横向各向同性(TI)材料。根据变形的物理模式,首次将独特的松弛响应纳入非线性粘弹性的积分公式中。该理论与小应变极限内的线性粘弹性是一致的,并在给定时间/变形可分离性假设的情况下利用了可以从小应变实验中确定的松弛函数。在考虑了适用于可压缩材料的一般本构形式之后,注意力仅限于不可压缩的介质。这使得可以导出本构关系的紧凑形式,该形式用于说明模型在三种主要变形下的行为:单轴延伸,横向剪切和纵向剪切。最后,证明了与横向变形的新霍克弹性材料相比,在横向剪切下的TI新霍克改性QLV材料中存在Poynting效应。它的存在可以通过介质的各向异性弛豫响应来解释。

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