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Large deformation mechanical modeling with bilinear stiffness for Macro-Fiber Composite bimorph based on extending mixing rules

机译:基于延伸混合规则的大纤维复合双芯片与双线性刚度大变形机械建模

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摘要

Macro-Fiber Composite bimorph is a kind of piezoelectric actuator that allow large bending deformation. However, macro-fiber composites exhibit strong stiffness nonlinearity in their operation range, so it is difficult to accurately estimate their large deformation behavior based on a linear constitutive model. In addition, the macro-fiber composites have active and inactive parts, that significantly differ in their material sizes and properties, so it is not reasonable to consider them as uniform material. Thus, it is necessary develop an accurate modeling and analysis method for the large deformation macro-fiber composite structures. First, the mixing rules are extended to derive the three-dimensional homogenized mechanical and electrical parameters of the macro-fiber composite active part; based on these parameters, the actuation results of linear finite element model is in good agreement with the official data. Then a finite element model of the axially compressed macro-fiber composite bimorph is established, the bilinear tensile stiffness of macro-fiber composite is realized by secondary development in ANSYS. Comparison with the experimental results reveals high accuracy of the established finite element model. Thus, the developed method can be effectively used for the performance evaluation and design of the macro-fiber composite devices with large deformation.
机译:宏观纤维复合双芯片是一种压电致动器,允许大的弯曲变形。然而,宏观 - 纤维复合材料在其操作范围内表现出强刚度非线性,因此难以基于线性本构模型准确地估计其大的变形行为。此外,宏观光纤复合材料具有有源和非活性的部件,其材料尺寸和性能显着不同,因此认为它们是均匀的材料是不合理的。因此,需要为大变形宏观纤维复合结构进行精确的建模和分析方法。首先,延伸混合规则以导出宏观纤维复合活性部分的三维均质机械和电气参数;基于这些参数,线性有限元模型的致动结果与官方数据吻合良好。然后建立了轴向压缩的宏观光纤复合双芯片的有限元模型,通过ANSYS中的二次发育来实现宏观纤维复合物的双线性拉伸刚度。与实验结果的比较揭示了已建立的有限元模型的高精度。因此,开发方法可以有效地用于具有大变形的宏观光纤复合装置的性能评估和设计。

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