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Numerical and experimental study of hysteretic behavior of cylindrical friction dampers

机译:圆柱摩擦阻尼器滞回特性的数值和实验研究

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Frictional dampers utilize the mechanism of friction for absorbing and dissipating the energy imparted to the dynamic systems. Frictional dampers are widely used in mechanical systems in various industries in order to mitigate the impact and vibration effects. Frictional dampers are also utilized in structures as means of passive control to improve the seismic behavior of structures. In this investigation, an innovative type of frictional damper called cylindrical friction damper (CFD) is proposed. This damper consists of two main parts, the inner shaft and the outer cylinder. Dimensions and properties of the main parts are defined based on seismic demand of structures. These two parts are assembled such that one is shrink fitted inside the other. Upon application of proper axial loading to both ends of the CFD, the shaft will move inside the cylinder by overcoming the friction. This in turn leads to considerable dissipation of mechanical energy. In contrast to other frictional dampers, the CFDs do not use high-strength bolts to induce friction between contact surfaces. This reduces construction costs, simplifies design computations and increases reliability in comparison with other types of frictional dampers. The hysteretic behavior of CFD is studied by experimental and numerical methods. The results show that the proposed damper has great energy absorption by stable hysteretic loops, which significantly improves the performance of structures subjected to earthquake loads. Also, a close agreement between the experimental and numerical results is observed.
机译:摩擦阻尼器利用摩擦机制吸收和耗散传递给动态系统的能量。摩擦阻尼器广泛用于各种行业的机械系统中,以减轻冲击和振动影响。摩擦阻尼器也被用在结构中作为被动控制的手段,以改善结构的抗震性能。在这项研究中,提出了一种创新型的摩擦阻尼器,称为圆柱摩擦阻尼器(CFD)。该风门由两个主要部分组成,内轴和外缸。主要部件的尺寸和性能是根据结构的抗震要求定义的。组装这两个零件,使得其中一个零件可收缩地安装在另一个零件中。在CFD的两端施加适当的轴向载荷后,轴将克服摩擦力而在气缸内移动。这继而导致机械能的大量耗散。与其他摩擦阻尼器相比,CFD不使用高强度螺栓在接触面之间产生摩擦。与其他类型的摩擦阻尼器相比,这降低了建造成本,简化了设计计算并提高了可靠性。通过实验和数值方法研究了CFD的滞后行为。结果表明,所提出的减振器具有稳定的磁滞回线,具有较大的能量吸收能力,从而显着提高了结构在地震荷载作用下的性能。此外,观察到实验结果和数值结果之间的密切一致性。

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