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    • 23. 发明授权
    • Flexible self-erecting substructures for sensor networks
    • 用于传感器网络的灵活的自立式子结构
    • US08201773B1
    • 2012-06-19
    • US12167075
    • 2008-07-02
    • Jayson T. DurhamJoshua Blanchi
    • Jayson T. DurhamJoshua Blanchi
    • B64C3/56
    • B64C39/028B64C2201/102
    • A composite flexible and aerodynamic load bearing wing structure suitable for compact unmanned vehicles, is described. Flexible printed circuitry and micro fuel cells can be incorporated as, or part of, the flexible aerodynamic structure. Accordingly, the overall system configuration can be optimized with respect to weight, space and size requirements. The flexible aerodynamic structure for the unmanned vehicle may be configured with a flexible dielectric substrate having an electrical contact on at least one surface of the substrate, and a flexible printed circuit disposed upon the substrate. The printed circuit can flex with the substrate and the substrate, with the printed circuit, to form a load lifting aerodynamic wing configuration when unfolded from a folded position.
    • 描述了适用于紧凑型无人驾驶车辆的复合柔性和空气动力学承载翼结构。 柔性印刷电路和微型燃料电池可以作为柔性空气动力学结构的一部分或部分结合。 因此,可以根据重量,空间和尺寸要求优化整个系统配置。 用于无人驾驶车辆的柔性空气动力学结构可以配置有在基板的至少一个表面上具有电接触的柔性电介质基板和设置在基板上的柔性印刷电路。 印刷电路可以利用印刷电路与基板和基板一起弯曲,以在从折叠位置展开时形成负载提升空气动力学翼结构。