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Influence of Mechanical Couplings on the Dynamical Behavior and Energy Harvesting of a Composite Structure

机译:机械联轴器对复合结构动力学行为及能量采伐的影响

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摘要

In this paper, the dynamical behavior of composite material is analyzed, including the energy harvesting effect. The composite is modeled by the Finite Element Method (FEM) and is made of pre-impregnate with a matrix of thermosetting epoxy resin reinforced with high-strength R-type glass fibers, and it is designed as a beam structure that is exposed to mechanical vibrations. The structure assumed the form of a beam with a substantially rectangular cross section. The couplings of motion occurring between mode shapes at properly selected fiber orientations are investigated. The beams with determined sets of composite layers and a coupling effect are used to recover electricity from the mechanical vibrations in the vicinity of the first resonance zone. The composite with a certain number of fiber glass layers has assumed an orientation relative to the beam axis. The new values found in this paper are the intensity of the coupling between the bending in the stiff and flexible directions of the beam for a chosen fiber layer stacking sequence. Additionally, the influence of layer configuration on the energy harvesting efficiency of the Macro-Fiber Composite (MFC) piezoelectric element is assessed.
机译:本文分析了复合材料的动力学行为,包括能量收集效果。复合材料由有限元方法(FEM)建模,并且由高强度R型玻璃纤维增​​强的热固性环氧树脂的基质进行预浸渍,并且设计为暴露于机械的梁结构振动。该结构假设具有大致矩形横截面的光束的形式。研究了在模式形状之间发生在正确选择的纤维方向之间的运动的联接。具有确定的复合层组和耦合效果的梁用于从第一谐振区附近的机械振动中回收电力。具有一定数量的纤维玻璃层的复合材料已经采用相对于梁轴线的取向。本文中发现的新值是所选择的光纤层堆叠序列的梁的刚性和柔性方向之间的耦合之间的耦合强度。另外,评估层配置对宏观 - 纤维复合材料(MFC)压电元件的能量收集效率的影响。

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