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Design and application of PneuNets bending actuator

机译:弯曲弯曲执行器的设计与应用

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摘要

Purpose - The purpose of this study is to propose an improved design of PneuNets bending actuator which aims at obtaining larger deflection with the same magnitude of pressure. The PneuNets bending actuator shows potential application in the morphing trailing edge concept. Design/methodology/approach - Finite element method is used to investigate the characteristics of the improved design bending actuator. Multiobjective optimal design of the PneuNets bending actuator is proposed based on the Gauss process regression models. Findings - The maximum deflection is obtained when the height of the beams is smaller than half the height of the chambers. The spacing between chambers (beam length) has little effect on the deflection. Larger spacing could be used to reduce the actuator weight. Originality/value - With the same pressure magnitude, the deflection of the improved design bending actuator is much larger than that of the baseline configuration. PneuNets bending actuator could increase the continuity of the aerodynamic surface compared to other actuators.
机译:目的 - 本研究的目的是提出一种改进的弯曲弯曲致动器的设计,该抗杆致动器旨在获得具有相同压力幅度的较大偏转。肌肉弯曲执行器在变形后边缘概念中显示出潜在的应用。设计/方法/方法 - 有限元方法用于研究改进的设计弯曲致动器的特性。基于Gauss Process回归模型,提出了PneUnet弯曲致动器的多目标最佳设计。发现 - 当梁的高度小于腔室高度的一半时,获得最大偏转。腔室(光束长度)之间的间距对偏转几乎没有影响。可以使用较大的间隔来减少致动器重量。原创性/值 - 具有相同的压力幅度,改进的设计弯曲致动器的偏转远大于基线配置的偏转。与其他致动器相比,弯曲弯曲致动器可以增加空气动力学表面的连续性。

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