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Spatial stress and strain distributions of viscoelastic layers in oscillatory shear

机译:振荡剪切中粘弹性层的空间应力和应变分布

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One of the standard experimental probes of a viscoelastic material is to measure the response of a layer trapped between parallel surfaces, imposing either periodic stress or strain at one boundary and measuring the other. The relative phase between stress and strain yields solid-like and liquid-like properties, called the storage and loss moduli, respectively, which are then captured over a range of imposed frequencies. Rarely are the full spatial distributions of shear and normal stresses considered, primarily because they cannot be measured except at boundaries and the information was not deemed of particular interest in theoretical studies. Likewise, strain distributions throughout the layer were traditionally ignored except in a classical protocol of Ferry, Adler and Sawyer, based on snapshots of standing shear waves. Recent investigations of thin lung mucus layers exposed to oscillatory stress (breathing) and strain (coordinated cilia), however, suggest that the wide range of healthy conditions and environmental or disease assaults lead to conditions that are quite disparate from the "surface loading" and "gap loading" conditions that characterize classical rheometers. In this article, we extend our previous linear and nonlinear models of boundary stresses in controlled oscillatory strain to the entire layer. To illustrate non-intuitive heterogeneous responses, we characterize experimental conditions and material parameter ranges where the maximum stresses migrate into the channel interior.
机译:粘弹性材料的标准实验探针之一是测量被困在平行表面之间的层的响应,在一个边界处施加周期性应力或应变,而在另一个边界处进行测量。应力和应变之间的相对相位会产生固态和液态特性,分别称为存储模量和损耗模量,然后在一定的施加频率范围内捕获它们。很少考虑剪力和法向应力的完整空间分布,主要是因为它们只能在边界处进行测量,并且该信息在理论研究中不被特别关注。同样,除了Ferry,Adler和Sawyer的经典协议(基于剪力波的快照)之外,传统上也忽略了整个层的应变分布。然而,最近对暴露于振荡压力(呼吸)和应变(纤毛协调)的肺粘液薄层的研究表明,广泛的健康状况和环境或疾病侵袭导致了与“表面负荷”完全不同的状况。经典流变仪的“间隙加载”条件。在本文中,我们将先前在受控振荡应变中的边界应力线性和非线性模型扩展到整个层。为了说明非直觉的异质响应,我们描述了最大应力向通道内部迁移的实验条件和材料参数范围。

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