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VIBRATION CONTROL OF A CANTILEVER BEAM BY METAL-CORE FLEXOELECTRIC AND PIEZOELECTRIC FIBERS

机译:金属芯柔性纤维和压电纤维悬臂梁的振动控制

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Flexoelectric effect occurs in the solid crystalline dielectrics of symmetry or centro-symmetric crystals, which shows the electromechanical coupling of the polarization response and the strain gradient or the stress and the electric field gradient. Thus, a generic stress expression induced by the converse flexoelectric effect is established first in this study. The generic stress expression is simplified to a cantilever beam to evaluate the vibration control effect due to the converse flexoelectric effect. Flexoelectric fiber embedded with a metal core is placed into the cantilever beam to generate inhomogeneous electric field. When the flexoelectric fiber is actuated with the applied voltage, stress induced by the actuator is obtained with the electric field gradient, which results in a control bending moment to the beam. Static displacement control of the cantilever beam is established and the control effect is related to the fiber location and size of the flexoelectric fiber and the metal core. Cases show that the control effect is enhanced when the flexoelectric fiber is far away from the neural surface of the beam. Besides, the control effect can enhance with thinner fiber thickness. Since the piezoelectricity is similar to the flexoelectricity, comparison of the vibration control induced by the piezoelectric fiber is also discussed. The results show that the control effect of the flexoelectric fiber is more effective than the piezoelectric fiber in the cantilever beam.
机译:柔性效应发生在对称或纤维对称晶体的固体晶体电介质中,其示出了极化响应和应变梯度或应力和电场梯度的机电耦合。因此,在本研究中首先建立由逆脉冲效应引起的通用应力表达。通用应力表达式被简化到悬臂梁,以评估由于逆脉冲效应引起的振动控制效果。嵌入金属芯的柔性电纤维被放入悬臂梁中以产生不均匀的电场。当柔性释放光纤被施加的电压致动时,用电场梯度获得由致动器引起的应力,这导致梁的控制弯矩。建立了悬臂梁的静态位移控制,控制效果与柔性电纤维的光纤位置和尺寸和金属芯有关。案例表明,当柔性纤维远离梁的神经表面时,控制效果增强。此外,控制效果可以通过较薄的纤维厚度增强。由于压电性类似于柔性电性,因此还讨论了压电纤维引起的振动控制的比较。结果表明,挠光纤维的控制效果比悬臂梁中的压电纤维更有效。

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