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Uniaxial cyclic tensile mechanical properties of ethylene tetrafluoroethylene (ETFE) foils

机译:乙烯四氟乙烯(ETFE)箔的单轴循环拉伸力学性能

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摘要

This paper concerns the uniaxial cyclic tensile mechanical properties of ethylene tetrafluoroethylene (ETFE) foils that are widely used in mechanical and construction industries. The experiments involved eight cases with loading stress amplitudes ranging from 4 to 21 MPa. The experimental results show that the yield stress is a main mechanical property as the hysteresis loop and ratcheting strains become noticeable after the yield stress and that the elastic modulus, hysteresis loop and ratcheting strains evolve with the number of cycles and loading stress amplitude. To quantify these mechanical properties, a newly-developed MATLAB program is employed to process the experimental data. It is found that the appropriate cyclic elastic modulus needs to be divided into three kinds and that ratcheting strains and hysteresis loop area in the 16th cycle are found to be approximate stable. These findings could offer an understanding of the discrepancies between numerical results calculated based on the uniaxial mechanical properties and experimental results under field loading conditions.
机译:本文涉及乙烯四氟乙烯(ETFE)箔的单轴循环拉伸机械性能,该箔已广泛用于机械和建筑行业。实验涉及八种情况,载荷应力幅度范围为4到21 MPa。实验结果表明,屈服应力是主要的机械性能,因为在屈服应力后磁滞回线和棘轮应变变得明显,并且弹性模量,磁滞回线和棘轮应变随循环次数和载荷应力幅度的变化而变化。为了量化这些机械性能,采用了新开发的MATLAB程序来处理实验数据。发现适当的循环弹性模量需要分为三种,并且在第十六个循环中棘轮应变和滞后回线面积被发现是近似稳定的。这些发现可以提供对基于单轴力学性能计算的数值结果与现场载荷条件下的实验结果之间差异的理解。

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