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Design of synthetic jet actuator based on FSMA composite

机译:基于FSMA复合材料的合成射流执行器设计。

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An improved version of the membrane actuator has been designed and constructed based on our previous diaphragm actuator. It consists of ferromagnetic shape memory alloy composite (FSMA) diaphragm and an electromagnet system. The actuation mechanism of the membrane actuator is the hybrid mechanism that we proposed previously. The high momentum airflow will be produced by the oscillation of the circular FSMA composite diaphragm driven by electromagnets close to its resonance frequency. This membrane actuator is designed for the active flow control technology on airplane wings. The active flow control (AFC) technology has been studied and shown that it can help aircraft improve aerodynamic performance and jet noise reduction. AFC can be achieved by a synthetic jet actuator injecting high momentum air into the airflow at the appropriate locations on aircraft wings. Due to large force and martensitic transformation on the FSMA composite diaphragm, the membrane actuator can produce 190 m/s synthetic jets at 220 Hz. A series connection of several membrane actuators is proposed to construct a synthetic jet actuator package for distributing synthetic jet flow along the wing span.
机译:在我们以前的膜片执行器的基础上,设计和构造了膜执行器的改进版。它由铁磁形状记忆合金复合(FSMA)膜片和电磁系统组成。膜片执行器的执行机构是我们先前提出的混合机构。由电磁驱动的圆形FSMA复合膜片的振动接近其共振频率将产生高动量气流。该膜片执行器专为飞机机翼上的主动流量控制技术而设计。研究了主动流控制(AFC)技术,它可以帮助飞机提高空气动力学性能和降低喷气噪声。 AFC可以通过合成射流致动器在飞机机翼的适当位置将高动量空气注入气流中来实现。由于FSMA复合膜片上有很大的力和马氏体相变,因此膜片执行器可以在220 Hz下产生190 m / s的合成射流。提出了多个膜致动器的串联连接以构造用于沿机翼翼展分布合成射流的合成射流致动器组件。

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