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Active Healing of Delaminated Composite Structure Using Piezoelectric Actuator

机译:压电驱动器对分层复合结构的主动修复

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Recently, light weight structure becomes an object of attention because increase of energy efficiency becomes the most important global hot issue. Then, composite structures, which have inherent high strength and stiffness to weight ratio, are in the limelight for light weight structures. However, complex failure modes of composite structure are still remains unsolved problem and become main obstacle of wide application of composite structures. Delamination is one of frequent damage phenomenon of laminated composite structure. Delamination can cause reduction of structural stiffness and decrement of natural frequencies. This might induce increase of structural vibration and resonant phenomenon of operating structures. Then, delamination should be detected and complemented. In this work, active control scheme and piezoelectric actuators are used to reduce the delamination effect of damaged composite structure. At first, finite element model for delaminated composite structure is constructed based on improved layerwise theory and then state space control model is established. After design and implementation of active controller, dynamic characteristics and structural performances of damaged composite structure are investigated and effectiveness of active healing is evaluated.
机译:近年来,轻量化结构成为关注的对象,因为提高能效成为最重要的全球热点问题。然后,具有固有的高强度和刚度与重量比的复合结构成为轻型结构的关注焦点。然而,复杂的复合结构破坏模式仍然是尚未解决的问题,成为复合结构广泛应用的主要障碍。分层是层压复合结构的常见破坏现象之一。分层会导致结构刚度降低和固有频率降低。这可能会引起结构振动的增加和操作结构的共振现象。然后,应检测到分层并进行补充。在这项工作中,采用主动控制方案和压电致动器来减少受损复合结构的分层效应。首先,基于改进的分层理论,建立了分层复合结构的有限元模型,然后建立了状态空间控制模型。通过主动控制器的设计与实现,研究了受损复合材料结构的动力特性和结构性能,评估了主动修复的有效性。

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