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Experimental study and constitutive modeling on viscoelastic-plastic mechanical properties of ETFE foils subjected to uniaxial monotonic tension at various strain rates

机译:在各种应变率下对高速箔粘弹性塑料力学性能的实验研究与本构模拟

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Apart from the well-known excellent basic properties, the mechanical behaviors of ETFE (ethylene tetrafluoroethylene) foils are more fundamental for the refined design and analysis of ETFE membrane structures. This paper investigates the nonlinear mechanical properties of ETFE foils at varying strain rates (0.01 to 10 min (1)) through a combination of experiments and modeling. First, the uniaxial tensile tests at nine loading strain rates were completed on ETFE foil dumbbell specimens. The analysis of experimental results shows that ETFE foils exhibit the rate-sensitive and viscoelastic-plastic behaviors with two distinct yield points. Next, to simulate the nonlinearity of ETFE foils at the former deformation stage, the stress-strain constitutive equations at certain strain rates are established based on the generalized Maxwell model comprising one basic spring element and several basic Maxwell models. After identifying the model parameters, it is observed that the proposed model can accurately describe the viscoelastic-plastic mechanical behaviors of ETFE foils since good agreement is gained from the comparison between experimental results and model predictions. Finally, through establishing the relationship functions between model parameters and strain rates, the continuum constitutive model can be extended to predict the rate-dependent viscoelastic-plastic behaviors of ETFE foils. The experimental observations and constitutive model concerning the rate-dependent mechanical properties of ETFE foils would be helpful for the refined design, optimization and analysis of ETFE membrane structures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:除了众所周知的优异基础特性外,ETFE(乙烯四氟乙烯)箔的机械行为对于ETFE膜结构的精致设计和分析更为根本性。本文通过实验和建模的组合研究了在不同应变率(0.01至10分钟(1))以不同的菌株率(0.01至10分钟)的非线性力学性能。首先,在ETFE箔哑铃样本上完成了九个负载率下的单轴拉伸试验。实验结果的分析表明,ETFE箔表现出具有两个不同屈服点的速率敏感和粘弹性的行为。接下来,为了模拟前变形阶段的ETFE箔的非线性,基于包括一个基本弹簧元件和几个基本的麦克斯韦模型的广义麦克斯韦模型建立了某些应变速率下的应力 - 应变组成型方程。在识别模型参数之后,观察到所提出的模型可以准确描述ETFE箔的粘弹性机械行为,因为从实验结果和模型预测之间的比较中获得了良好的一致性。最后,通过建立模型参数和应变速率之间的关系功能,可以扩展连续体本构模型以预测ETFE箔的速率依赖性粘弹性行为。关于ETFE箔的速率依赖性机械性能的实验观察和本构模型对于ETFE膜结构的精致设计,优化和分析有所帮助。 (c)2020 elestvier有限公司保留所有权利。

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