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Probabilistic Simulation of Multi-Scale Composite Behavior

机译:多尺度复合行为的概率模拟

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A methodology is developed to computationally assess the probabilistic composite behavior at all composite scales (from micro to structural) due to the uncertainties in the constituent (fiber and matrix) properties, in the fabrication process and in structural variables (primitive variables). The methodology is computationally efficient for simulating the probability distributions of composite behavior, such as material properties, laminate and structural responses. Bi-products of the methodology are probabilistic sensitivities of the composite primitive variables. The methodology has been implemented into the computer codes PICAN (Probabilistic Integrated Composite ANalyzer) and IPACS (Integrated Probabilistic Assessment of Composite Structures). The accuracy and efficiency of this methodology are demonstrated by simulating the uncertainties in composite typical laminates and comparing the results with the Monte Carlo simulation method. Available experimental data of composite laminate behavior at all scales fall within the scatters predicted by PICAN. Multi-scaling is extended to simulate probabilistic thermo-mechanical fatigue and to simulate the probabilistic design of a composite redome in order to illustrate its versatility. Results show that probabilistic fatigue can be simulated for different temperature amplitudes and for different cyclic stress magnitudes. Results also show that laminate configurations can be selected to increase the redome reliability by several orders of magnitude without increasing the laminate thickness - a unique feature of structural composites.
机译:由于组成(纤维和基质)特性,制造过程和结构变量(原始变量)的不确定性,开发了一种方法来计算评估所有复合尺度(从微观到结构)的概率复合行为。该方法在计算复合行为(例如材料属性,层压材料和结构响应)的概率分布方面具有很高的计算效率。该方法的副产品是复合原始变量的概率敏感性。该方法已在计算机代码PICAN(概率集成复合材料分析仪)和IPACS(复合结构的集成概率评估)中实现。通过模拟复合材料典型层压板的不确定性,并将结果与​​蒙特卡洛模拟方法进行比较,证明了该方法的准确性和效率。在所有比例下,可用的复合材料层压板性能实验数据均在PICAN预测的范围内。扩展了多尺度以模拟概率热机械疲劳并模拟复合重做器的概率设计,以说明其多功能性。结果表明,可以针对不同的温度幅值和不同的循环应力幅值模拟概率疲劳。结果还表明,可以选择层压板配置,以在不增加层压板厚度的情况下将重做组可靠性提高几个数量级,这是结构复合材料的独特功能。

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