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Modeling the constant amplitude fatigue behavior of adhesively bonded pultruded GFRP joints

机译:胶粘拉挤GFRP接头的恒定振幅疲劳行为建模

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The constant amplitude fatigue behavior of adhesively bonded pultruded glass fiber reinforced polymer double-lap joints were modeled by a number of conceptually different phenomenological S-N (cyclic stress vs. number of cycle) formulations. An extended database containing constant amplitude fatigue data under tension (R = 0.1), compression (R = 10), and reversed loading (R = — 1) were analyzed in order to investigate whether or not there exists an appropriate fatigue formulation for accurate modeling of the behavior of the examined joints throughout their lifetime, from the very low-cycle fatigue to the high-cycle fatigue regions. Based on an extensive review, appropriate fatigue formulations that take into account the probabilistic nature of lifetime measurements were selected and their fundamental assumptions were examined. The validity of the statistical assumptions of these models was found to be influenced by the applied loading conditions. The modeling results were similar for all selected fatigue formulations with the derived S-N curves exhibiting differences mainly in the low- and high-cycle fatigue regimes. The formulations insensitive to the scatter in the experimental data were found to be the most appropriate models.
机译:胶粘拉挤玻璃纤维增​​强聚合物双搭接接头的恒定振幅疲劳行为是通过许多概念上不同的现象学S-N(循环应力与循环次数)公式化建模的。为了研究是否存在合适的疲劳公式进行精确建模,对扩展数据库进行了分析,该数据库包含在张力(R = 0.1),压缩(R = 10)和反向载荷(R = _1)下的恒定振幅疲劳数据。从极低循环疲劳到高循环疲劳区域,对所检查接头的整个生命周期的行为进行分析。在广泛审查的基础上,选择了考虑到寿命测量的概率性质的适当疲劳公式,并检验了其基本假设。发现这些模型的统计假设的有效性受到所施加载荷条件的影响。对于所有选定的疲劳配方,建模结果都是相似的,其中得出的S-N曲线主要在低周疲劳和高周疲劳方面表现出差异。实验数据中对散射不敏感的配方被认为是最合适的模型。

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