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Integration of fluidic jet actuators in composite structures

机译:射流致动器在复合结构中的集成

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Fluidic Actuated Flow Control (FAFC) has been introduced as a technology that influences the boundary layer by actively blowing air through slots or holes in the aircraft skin or wind turbine rotor blade. Modern wing structures are or will be manufactured using composite materials. In these state of the art systems, AFC actuators are integrated in a hybrid approach. The new idea is to directly integrate the active fluidic elements (such as SJAs and PJAs) and their components in the structure of the airfoil. Consequently, the integration of such fluidic devices must fit the manufacturing process and the material properties of the composite structure. The challenge is to integrate temperature-sensitive active elements and to realize fluidic cavities at the same time. The transducer elements will be provided for the manufacturing steps using roll-to-roll processes. The fluidic parts of the actuators will be manufactured using the MuCell® process that provides on the one hand the defined reproduction of the fluidic structures and, on the other hand, a high light weight index. Based on the first design concept, a demonstrator was developed in order to proof the design approach. The output velocity on the exit was measured using a hot-wire anemometer.
机译:流体致动流控制(FAFC)已作为一种技术引入,它通过主动将空气吹过飞机蒙皮或风力涡轮机转子叶片上的缝隙或孔来影响边界层。现代机翼结构已经或将要使用复合材料制造。在这些最新的系统中,AFC执行器以混合方式集成。新想法是将主动流体元素(例如SJA和PJA)及其组件直接集成到机翼结构中。因此,这种流体装置的集成必须适合制造过程和复合结构的材料特性。挑战在于集成对温度敏感的有源元件并同时实现流体腔。将使用卷对卷工艺为制造步骤提供换能器元件。执行器的流体部件将使用MuCell®工艺制造,该工艺一方面提供了流体结构的确定的复制效果,另一方面又提供了高轻量化指数。基于第一个设计概念,开发了演示器以证明设计方法。使用热线风速仪测量出口处的输出速度。

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