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Control strategies for friction dampers: numerical assessment and experimental investigations.

机译:摩擦阻尼器的控制策略:数值评估和实验研究。

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The use of friction dampers has been proposed in a wide variety of mechanical systems for which it is not possible to apply viscoelastic materials, fluid based dampers or others viscous dampers. An important example is the application of friction dampers in aircraft engines to reduce the blades vibration amplitudes. In most cases, friction dampers have been studied in a passive way, however, a significant improvement can be achieved by controlling the normal force in the dampers. The aim of this paper is to study three control strategies for friction dampers based on the hysteresis cycle. The first control strategy maximizes the energy removal in each harmonic oscillation cycle, by calculating the optimum normal force based on the last displacement peak. The second control strategy combines the first one with the maximum energy removal strategy used in the smart spring devices. Finally, is presented the strategy which homogenously modulates the friction force. Numerical studies were performed with these three strategies defining the performance metrics. The best control strategy was applied experimentally. The experimental test rig was fully identified and its parameters were used for the numerical simulations. The obtained results show the good performance for the friction damper and the selected strategy.
机译:已经提出在各种机械系统中使用摩擦阻尼器,对于这些机械阻尼器,不可能应用粘弹性材料,基于流体的阻尼器或其他粘性阻尼器。一个重要的例子是摩擦阻尼器在飞机发动机中的应用,以减小叶片的振动幅度。在大多数情况下,已经以被动方式研究了摩擦阻尼器,但是,通过控制阻尼器中的法向力可以实现显着的改进。本文的目的是研究基于滞后循环的三种摩擦阻尼器控制策略。第一种控制策略是根据最后一个位移峰值计算最佳法向力,从而在每个谐波振荡周期中最大程度地消除能量。第二种控制策略将第一种与智能弹簧设备中使用的最大能量去除策略结合在一起。最后,提出了均匀调节摩擦力的策略。用这三种定义性能指标的策略进行了数值研究。最佳控制策略已通过实验应用。完全确定了实验测试台,并将其参数用于数值模拟。获得的结果表明,该摩擦阻尼器具有良好的性能,并且选择了相应的策略。

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