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Electrostatic adhesion for added functionality of composite structures

机译:静电附着力可增强复合结构的功能

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Electrostatic adhesion can be used as a means of reversible attachment. The incorporation of electrostatic adhesion into fibre reinforced polymer (FRP) composite structures could provide significant value added functionality. Imparting large potential differences (similar to 2 kV) across electrodes generates an attractive force, thus providing a means of attachment. This could be used as a reversible latching mechanism or as a means of controllable internal connectivity. Varying the connectivity for discrete elements of a substructure of a given design allows for control of internal load paths and moment of area of the cross section. This could facilitate variable stiffness (both in bending and torsion). Using a combination of existing fabrication techniques, functional electrodes have been integrated within a FRP. Copper polyimide thin film laminate material has been both co-cured with carbon fibre reinforced epoxy and bonded to PVC closed cell foam core material to provide a range of structural configurations with integrated electrodes. The ability of such integrated devices to confer variations in global bending stiffness of basic beam structures is investigated. Through the application of 4 kV across integrated electrostatic adhesive devices, a 112% increase in flexural stiffness has been demonstrated for a composite sandwich structure.
机译:静电粘附可以用作可逆附着的手段。将静电粘合结合到纤维增强聚合物(FRP)复合结构中可以提供显着的增值功能。在电极之间施加大的电势差(类似于2 kV)会产生吸引力,从而提供一种附着方式。这可以用作可逆的闩锁机制或可控制的内部连接方式。改变给定设计的子结构的离散元件的连通性允许控制内部载荷路径和横截面积。这可以促进可变的刚度(弯曲和扭转)。使用现有制造技术的组合,功能电极已集成在FRP中。聚酰亚胺铜薄膜层压材料既可以与碳纤维增强的环氧树脂共固化,又可以粘结到PVC闭孔泡沫芯材上,以提供一系列带有集成电极的结构配置。研究了这种集成装置赋予基本梁结构整体弯曲刚度变化的能力。通过跨集成静电粘合剂设备施加4 kV的电压,复合夹层结构的抗弯刚度提高了112%。

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