首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >LIFE PREDICTION AND STIFFNESS DEGRADATION MODELING OF GLASS/EPOXY COMPOSITES SUBJECTED TO FLEXURAL FATIGUE LOADING
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LIFE PREDICTION AND STIFFNESS DEGRADATION MODELING OF GLASS/EPOXY COMPOSITES SUBJECTED TO FLEXURAL FATIGUE LOADING

机译:玻璃/环氧复合材料经受弯曲疲劳负载的寿命预测和刚度降解模拟

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Textile composite are extensively used as structural materials for automotive, aerospace, energy, transportation and construction applications. During their service life these structures are subjected to different types of static and cyclic loading. For structural health monitoring of these structures, it is important to know the fatigue life and damage occurred at any stage of the life of the structure. Fatigue life is generally estimated using suitable life prediction model, while fatigue damage can be predicted by monitoring measurable damage parameters such as stiffness and strength. Two mathematical models namely fatigue life prediction model and stiffness degradation model are proposed for plain weave glass/epoxy composite subjected to flexural fatigue loading. Three different functions namely linear, exponential and sigmoid are evaluated to represent S-N diagram for plain weave glass/epoxy composite. Using predicted fatigue life along with initial modulus as inputs, the stiffness degradation model can predict residual stiffness at any stage of the fatigue loading life cycle. Logarithmic function used to represent stiffness degradation in the model is derived by inverting Boltzmann sigmoid function. The results of both, fatigue life model and stiffness degradation model were found to be in good agreement with those of the experimental results.
机译:纺织复合材料广泛用作汽车,航空航天,能源,运输和施工应用的结构材料。在他们的使用寿命期间,这些结构受到不同类型的静态和循环载荷。对于这些结构的结构健康监测,重要的是要知道结构寿命的任何阶段都发生了疲劳寿命和损坏。通常使用合适的寿命预测模型估计疲劳寿命,而通过监测可测量的损伤参数如刚度和强度,可以预测疲劳损坏。提出了两种数学模型即疲劳寿命预测模型和刚度降解模型,用于对弯曲疲劳负载进行普通编织玻璃/环氧复合材料。评估三种不同的函数即线性,指数和乙状胺,以表示普通编织玻璃/环氧复合材料的S-N图。使用预测的疲劳寿命以及作为输入的初始模量,刚度降解模型可以在疲劳负载寿命周期的任何阶段预测残留刚度。用于表示模型中的刚度劣化的对数函数通过反转Boltzmann Sigmoid函数来导出模型中的劣化。发现疲劳寿命模型和刚度降解模型的结果与实验结果吻合良好。

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