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An analytical method to determine the mechanical properties of linear viscoelastic solids.

机译:一种确定线性粘弹性固体力学性能的分析方法。

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摘要

A new methodology has been developed to model the viscoelastic behavior of solids using a general spectrum function. Not all materials can be modeled using simple Kelvin-Voigt (K-V) or Maxwell elements where the viscoelastic parameters are constants. There is a need for a general spectrum function that can be used to model the Lame' functions which constitute all properties of interest. Thus far, there is no method like the one presented in this study that can determine the moduli of viscoelastic materials. This study develops a methodology by which the time dependent properties of homogeneous and non-homogeneous materials may be modeled.; Once the Lame' functions are determined, the Principle of Correspondence is applied to the elastic equations to determine the necessary properties. In uniaxial tension the time dependent strain, modulus, Poisson's ratio, and compliance are determined. The time dependent deflection is determined for beams in flexure. Where applicable, parameters determined from the analytical model are compared to the available experimental data. Good agreements are found between the analytical and experimental data sets.
机译:已经开发出一种新的方法来使用通用光谱函数对固体的粘弹性行为进行建模。并非所有的材料都可以使用粘弹性参数为常数的简单Kelvin-Voigt(K-V)或Maxwell元素建模。需要一种通用频谱函数,该函数可以用来对构成所有感兴趣特性的拉姆函数进行建模。到目前为止,还没有像本研究中介绍的那样可以确定粘弹性材料模量的方法。这项研究开发了一种方法,通过该方法可以对均质和非均质材料的时间依赖性进行建模。一旦确定了Lame函数,就将对应原理应用于弹性方程式,以确定必要的特性。在单轴拉伸中,确定了随时间变化的应变,模量,泊松比和柔度。对于挠曲的梁,确定随时间变化的挠度。在适用的情况下,将从分析模型确定的参数与可用的实验数据进行比较。在分析和实验数据集之间找到了良好的协议。

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