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NFAL Prototype Design and Feasibility Analysis for Self-Levitated Conveying

机译:自悬浮输送的NFAL原型设计与可行性分析

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摘要

In order to avoid friction and scratching when conveying object, an acoustic levitation prototype was designed to verify the feasibility. The modal shapes and the forced harmonic shapes of the prototype are obtained by an ANSYS coupled field computation with a one-quarter symmetry model and the levitation capacity was assessed by the use of groups of simulation and physical testing. The simulation results showed that the pure flexural and mixed flexural wave shapes with different wave numbers existed at some specific frequency. The amplitude in the central point of an aluminum plate having four piezo-electric discs glued to the bottom surface was simulated for a frequency spectrum. The experimental results confirmed the theoretical results and the feasibility of the prototype and confirm that objects can be floated at several resonant frequencies under forced vibrating condition. The system can provide largest bearing capacity when both the piezoelectric disc and the plate resonances coincide.
机译:为了避免在运送物体时产生摩擦和刮擦,设计了一种声悬浮样机以验证其可行性。通过具有四分之一对称模型的ANSYS耦合场计算获得原型的模态形状和强制谐波形状,并通过模拟和物理测试组评估悬浮能力。仿真结果表明,具有不同波数的纯挠曲和混合挠曲波形在特定频率下存在。针对频谱,模拟了具有四个粘贴在底面上的压电盘的铝板的中心点的振幅。实验结果证实了理论结果和原型的可行性,并证实了在强迫振动条件下,物体可以在多个共振频率下漂浮。当压电盘和板共振同时发生时,该系统可以提供最大的承载能力。

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