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Semi-Active Vibration Control of Landing Gear Using Magneto-Rhelological Dampers

机译:磁石旋转阻尼器着陆齿轮的半主动振动控制

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Magneto-rhelological(MR) dampers are devices that use rheological fluids to modify the mechanical properties of fluid absorber. The mechanical simplicity, high dynamic range, large force capacity, lower power requirements, robustness and safe manner of operation have made MR dampers attractive devices for semi-active real-time control in civil, aerospace and automotive applications. Landing gear is one of the most essential components of the aircraft, which plays an extreme important role in preventing the airframe from vibration and excessive impact forces, improving passenger comfortable characteristics and increasing aircraft flight safety. In this paper, the semi-active system used in landing gear damping controller design, simulation, and the vibration test-bed are discussed and researched. The MR dampers employed in landing gear system were designed, manufactured and characterized as available semi-active actuators. On the basis of a large number of experimental data, a mathematical model based on the Bouc-Wen hysteresis model was adopted to predict both the force-displacement behavior and the complex nonlinear force-velocity response of the MR dampers. Using the landing gear vibration test-bed, the vibration characteristic of passive absorber was compared with the vibration characteristic of semi-active control. It is indicated that compared with passive control, the MR damper based on semi-active control can obviously restrain the displacement and acceleration response of the structure, and takes an effective performance in MR fluid absorber vibration reduction system.
机译:磁力Rhelologic(MR)阻尼器是使用流变液来改变流体吸收器的机械性能的装置。机械简单性,高动态范围,大力容量,较低的功率要求,鲁棒性和安全的操作方式使MR阻塞器有吸引力的装置在公民,航空航天和汽车应用中的半主动实时控制。着陆齿轮是飞机最重要的部件之一,这在防止空中振动和过度冲击力方面发挥着极大的作用,改善了乘客舒适的特性和增加飞机飞行安全。在本文中,讨论了在着陆齿轮阻尼控制器设计,仿真和振动试验床上使用的半极管系统。设计,制造和特征在于可用的半主动执行器,制造和表征着落花齿轮系统的MR阻尼器。在大量的实验数据的基础上,采用基于BOOC-WEN-WEN滞后模型的数学模型来预测MR阻尼器的力 - 位移行为和复杂的非线性力 - 速度响应。使用着陆齿轮振动试验床,与半主动控制的振动特性进行了比较了无源吸收器的振动特性。结果表明,与无源控制相比,基于半主动控制的MR阻尼器可以明显抑制结构的位移和加速度响应,并在MR流​​体吸收减振系统中采取有效性能。

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