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首页> 外文期刊>International Journal of Solids and Structures >Predeformation- and frequency-dependent material behaviour of filler-reinforced rubber: Experiments, constitutive modelling and parameter identification
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Predeformation- and frequency-dependent material behaviour of filler-reinforced rubber: Experiments, constitutive modelling and parameter identification

机译:填充增强橡胶的预变形和频率相关的材料性能:实验,本构模型和参数识别

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摘要

Elastomers show a significant dependence on predeformation and frequency when they are loaded with large static predeformations superimposed by harmonic deformations of small amplitude. In order to investigate this predeformation- and frequency-dependent material behaviour some quasi-static and dynamic experiments are carried out. Based on the experimental facts and further approaches of Haupt and Lion (2002) and Lion et al. (2009), a recently developed constitutive model of finite viscoelasticity is extended to take the dependence on the predeformation of storage- and loss-modulus into account. In terms of computation efficiency, we make use of a formulation in the frequency domain. Therefore the constitutive equations are geometrically linearised in the neighbourhood of the predeformation and evaluated in frequency domain. Finally the constitutive model is formulated for incompressible materials and the dynamic modulus tensors are derived. Additionally the process of parameter identification and some first numerical simulation results will be shown.
机译:当弹性体加载有较大的静态预变形并叠加有小振幅的谐波变形时,它们对预变形和频率的依赖性就很大。为了研究这种取决于变形和频率的材料行为,进行了一些准静态和动态实验。基于实验事实和Haupt and Lion(2002)以及Lion等人的进一步方法。 (2009年),扩展了最近开发的有限粘弹性本构模型,以考虑到对储能模量和损耗模量的预变形的依赖性。在计算效率方面,我们在频域中使用公式。因此,本构方程在预变形附近进行几何线性化,并在频域中进行评估。最后,建立了不可压缩材料的本构模型,并推导了动态模量张量。此外,还将显示参数识别的过程和一些最初的数值模拟结果。

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