首页> 外文会议>Annual Technical Conference of the Society of Plastics Engineers >STATIC DEFLECTION MODELING OF A PIEZOELECTRIC ACTUATED CANTILEVER COMPOSITE LAP JOINT BEAM
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STATIC DEFLECTION MODELING OF A PIEZOELECTRIC ACTUATED CANTILEVER COMPOSITE LAP JOINT BEAM

机译:压电驱动悬臂复合圈梁梁静态偏转建模

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This work studies the use of surface bonded piezoelectric induced strain actuators and their effect on the static deflection of a single lap joint epoxy-fiber composite cantilever beam. Euler-Bernoulli beam theory was utilized to derive the elastic curves for pre-load and post-load actuation, accounting for changes in flexural rigidity of the beam. The model accounts for physical properties of the composite beam and piezoelectric, as well as the piezoelectric bond location. A numerical study aimed at evaluating the effectiveness of piezoelectric actuation based pre-load and post-load actuation, as well as bond region has been performed. Post-load actuation was found to be from 2.5% - 70% more effective than pre-load actuation, depending on the bond location. Bond Region I was found to be most effective for both pre-load and post-load actuation.
机译:该工作研究了表面粘合压电诱导应变致动器的用途及其对单圈关节环氧树脂复合悬臂轴静态偏转的影响。利用Euler-Bernoulli光束理论来推导出用于预载和负载后致动的弹性曲线,占光束弯曲刚度的变化。该模型考虑了复合梁和压电的物理性质,以及压电键位置。旨在评估基于压电致动的预载荷和负载后致动的有效性的数值研究以及粘合区域。根据债券位置,发现负载后致动比预载致动更有效的2.5% - 70%。债券地区,我被发现对载荷预负载和负载后致动最有效。

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