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Self-sensing-based deflection control of carbon fibre-reinforced polymer (CFRP)-based shape memory alloy hybrid composite beams

机译:基于自感应的碳纤维增强聚合物(CFRP)的挠度控制 - 基于形状记忆合金杂交复合梁

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摘要

The fabrication of carbon fibre-reinforced polymer (CFRP)-based shape memory alloy hybrid composite (SMAHC) beams is highly challenging because conductive carbon fibres alter the electrical characteristics of the beams when driven by an electrical current. Here, we propose and fabricate a CFRP-based SMAHC beam with embedded SMA actuators using the electrical insulation methods. We firstly implemented a self-sensing-based deflection control of the CFRP-based SMAHC beam for unit-step and sinusoidal wave targets using its resistance as a feedback signal for estimating self-sensed deflection. The results reveal that the deflection was well controlled; however, the responses were slightly delayed. Therefore, in our future studies, we will concentrate on overcoming this response delay. Nevertheless, we found that the proposed SMAHC beam is highly feasible and can form the basis for future self-sensing-based controllable CFRP composite morphing structures.
机译:碳纤维增强聚合物(CFRP)的形状记忆合金混合复合物(SmaHC)梁的制造具有高度挑战,因为导电碳纤维在由电流驱动时改变梁的电特性。在这里,我们用电气绝缘方法提出并制造了一种基于CFRP的SMAHC梁,使用电绝缘方法使用嵌入式SMA执行器。我们首先利用其电阻作为用于估计自感偏转的反馈信号的单位步骤和正弦波靶的基于CFRP的SMAHC光束的基于CFRP的SMAHC光束的自感应的基于CFRP的SMAHC光束的偏转控制。结果表明,偏转良好控制;但是,响应略有延迟。因此,在未来的研究中,我们将集中克服这种响应延误。然而,我们发现所提出的SMAHC光束是非常可行的,可以为未来的自我感应的可控CFRP复合体变形结构构成基础。

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