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Overall properties of piezoelectric composites with spring-type imperfect interfaces using the mechanics of structure genome

机译:利用结构基因组机械压电复合材料的整体性能

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In this study, the mechanics of structure genome has been extended to piezoelasticity problem of composite materials with spring-type imperfect interfaces model. This full field micromechanics approach is applied to predict the effective electro-elastic properties of piezoelectric composite materials containing imperfect contact between the matrix and the reinforcements. Examples of long fibers and spherical particles reinforced piezoelectric composite materials are used to demonstrate the robustness and accuracy of the proposed micro mechanics theory. The size-dependency of the overall electro-elastic properties shows the importance of imperfect interfaces in modeling the electro-elastic behavior of composite materials.
机译:在该研究中,结构基因组的机制已经扩展到具有弹簧型不完全接口模型的复合材料的压力弹性问题。该全场微机械方法应用于预测压电复合材料的有效电弹性特性,该压电复合材料含有基质和增强件之间的不完美接触。长纤维和球形颗粒增强压电复合材料的实例用于展示所提出的微型力学理论的鲁棒性和准确性。整体电弹性特性的尺寸依赖性显示了不完美界面在建模复合材料的电弹性行为方面的重要性。

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