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A new variable stiffness absorber based on magneto-rheological elastomer

机译:基于磁流变弹性体的新型变刚度吸收器

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A new adaptive variable stiffness absorber was proposed based on a smart material, magnetorheological elastomer (MRE), and its vibration control performance was investigated. Before developing the proposed absorber, the MREs were firstly fabricated by curing a mixture of 704 silicon rubber, carbonyl iron particles and a small amount of silicone oil under an external magnetic field. Then the mechanical properties of the fabricated MREs were measured. On the basis of the measured mechanical characteristics, the MRE absorber was developed and its working characteristics were also tested under various input currents and excited frequencies. Finally, the control responses of a two-degree-offreedom dynamic system with a MRE absorber were presented under a chirp input and used to evaluate the effectiveness of the MRE absorber.
机译:提出了一种基于智能材料磁流变弹性体(MRE)的新型自适应变刚度吸收器,并对其振动控制性能进行了研究。在开发提出的吸收器之前,首先通过在外部磁场下固化704硅橡胶,羰基铁颗粒和少量硅油的混合物来制造MRE。然后测量所制造的MRE的机械性能。根据测量的机械特性,开发了MRE吸收器,并在各种输入电流和激励频率下测试了其工作特性。最后,在线性调频输入下,给出了带有MRE吸收器的两自由度动力系统的控制响应,并用于评估MRE吸收器的有效性。

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