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Numerical prediction of fiber mechanical properties considering random microstructures using inverse analysis with quasi-analytical gradients

机译:考虑准微观梯度反分析的考虑随机微结构的纤维力学性能数值预测

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摘要

An efficient and robust numerical scheme is reported that can inversely evaluate the elastic properties of fibers in unidirectional composites from the material properties of matrices and composite laminae. Considering the effect of microstructures such as random fiber arrangement, a set of finite element meshes are employed to represent the interaction between fiber and matrix. A lamina-scale cost function comprising the difference between the measured elastic properties and the computed elastic properties of a unidirectional lamina is minimized to evaluate fiber properties. In the minimization process, quasi-analytical gradients derived from prediction formulae, such as the Chamis or Halpin-Tsai models, are adopted to greatly reduce the computation cost. To verify the proposed scheme in terms of accuracy, efficiency, and robustness, the elastic properties of T650-35 fiber in a T650-35/PMR-15 lamina are evaluated with various representative volume elements containing randomly distributed fibers and voids. The evaluation results obtained by the proposed scheme are compared with results in the literature, and the effects of microstructures are discussed. (C) 2015 Elsevier Inc. All rights reserved.
机译:报道了一种有效且鲁棒的数值方案,该方案可以从基体和复合层的材料特性逆向评估单向复合材料中纤维的弹性特性。考虑到微观结构(例如随机纤维排列)的影响,采用了一组有限元网格来表示纤维与基体之间的相互作用。包括测得的弹性性能和计算得出的单向层的弹性性能之间的差异的层级成本函数被最小化,以评估纤维性能。在最小化过程中,采用了由预测公式(例如Chamis或Halpin-Tsai模型)得出的准分析梯度来大大降低计算成本。为了在准确性,效率和鲁棒性方面验证所提出的方案,使用包含随机分布的纤维和空隙的各种代表性体积元素评估了T650-35 / PMR-15层板中T650-35纤维的弹性特性。通过该方案获得的评估结果与文献中的结果进行了比较,并讨论了微观结构的影响。 (C)2015 Elsevier Inc.保留所有权利。

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