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Piezoelectric-piezomagnetic behaviour of coated long fiber composites accounting for eigenfields

机译:涂覆长纤维复合材料的压电-压电行为解释了本征场

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摘要

A unified micromechanical approach is proposed to evaluate the electro-magneto-mechanical response of coated long fiber composites with transversely isotropic piezoelectric-piezomagnetic behaviour. The developed framework takes into account the presence of electro-magneto-mechanical eigenfields. The multiscale strategy is based on solving specific boundary value problems in the same spirit as in the Composite Cylinders Assemblage technique. The solution of these problems provides analytical expressions of the dilute electro-magneto-mechanical concentration tensors. With the help of the latter, the mean-field approach of Mori-Tanaka is adapted to identify i) the overall response of the composite, and ii) the various average electro-magneto-mechanical fields generated in the matrix, the fiber and the coating layers for known macroscopic fields. It is found that the novel approach has the same accuracy as existing homogenization techniques in terms of electro-magneto-mechanical properties. The ability of the proposed model to predict both macroscopic and average microscopic fields per phase when eigenfields take place is finally demonstrated.
机译:提出了一种统一的微机械方法来评估具有横观各向同性压电-压电行为的包覆长纤维复合材料的电磁-机械响应。所开发的框架考虑了电磁机械本征场的存在。多尺度策略是基于解决特定边值问题的精神,与复合气瓶装配技术一样。这些问题的解决方案提供了稀薄的电磁机械浓度张量的解析表达式。在后者的帮助下,Mori-Tanaka的平均场方法适用于识别i)复合材料的整体响应,以及ii)在基质,纤维和纤维中产生的各种平均电磁机械场。已知宏观领域的涂层。已经发现,就电磁机械特性而言,该新颖方法具有与现有均质化技术相同的精度。最终证明了该模型预测本征场发生时每个相的宏观和平均微观场的能力。

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