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Static and Fatigue Characterization of Sandwich Panels

机译:夹芯板的静态和疲劳特性

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Problems for load carrying elements reside mainly in buckling, embrittlement and corrosion. These problems can be mainly solved by introduction of composite materials of a sandwich type. These materials ally lightness, rigidity and resistance to the corrosion. For the design of a large number of applications, static and cyclic properties are necessary. In this paper, first static and fatigue tests on four points bending of four types sandwich panels have been performed. Load/displacement and S-N fatigue curves are presented and analysed. Fatigue failure and damage modes are observed with an electronic microscope and are discussed. Numerical simulation applied to the static tests is compared to the experimental results. The second is to address such fatigue behaviour by using a damage model and check it by experimentation. This fatigue damage model is based on stiffness degradation, which is used as a damage indicator. Four non-linear cumulative damage models derived from the chosen stiffness degradation equation are examined with assumption of linear Miner's damage summation. Predicted results are compared with available experimental data.
机译:承载元件的问题主要在于屈曲,脆化和腐蚀。这些问题主要可以通过引入夹心型复合材料来解决。这些材料具有轻便,坚固和耐腐蚀的特性。对于大量应用程序的设计,静态和循环属性是必需的。在本文中,已经对四种类型的夹芯板的四点弯曲进行了首次静态和疲劳测试。给出并分析了载荷/位移和S-N疲劳曲线。用电子显微镜观察疲劳失效和损伤模式并进行讨论。将应用于静态测试的数值模拟与实验结果进行了比较。第二个是通过使用损伤模型来解决这种疲劳行为,并通过实验对其进行检查。该疲劳损伤模型基于刚度退化,该刚度退化用作损伤指标。假设线性Miner损伤总和,检查了从所选刚度退化方程得出的四个非线性累积损伤模型。将预测结果与可用的实验数据进行比较。

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