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Experimental investigation on the hysteresis behavior of the wire rope isolators

机译:钢丝绳隔离器磁滞特性的实验研究

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摘要

Vibration isolation has been widely applied to filter the external excitation energy and impact forces in building structures and equipment. Wire rope isolator (WRI), a kind of isolator for vibration and shock isolation, shows a better performance in attenuating these forces. WRIs are able to deviate these external forces through their mechanical configuration and high-energy dissipative capabilities. The application of WRI demands knowledge of its behavior and the relation between various geometrical properties and input force. The present work investigates the influence of geometrical parameters, such as wire rope diameter, number of coils, and displacement amplitude on the hysteresis behavior of WRI under quasi-static loading in both vertical and horizontal directions. The hysteresis behavior of different WRIs was evaluated using the calculated parameters from hysteresis force-displacement curves: energy loss ratio (ELR), and effective stiffness. The study indicates that the geometric properties significantly influence the effective stiffness than the energy loss ratio. It is observed that, increased displacement amplitude results in decreased ELR and hence damping capabilities. The study also confirms that the wire rope isolator possesses a good ability in damping through its stiffness and high-energy dissipation capability.
机译:隔振已经广泛应用于过滤建筑结构和设备中的外部激发能和冲击力。钢丝绳隔离器(WRI)是一种用于隔离振动和冲击的隔离器,在衰减这些力方面表现出更好的性能。 WRI能够通过其机械配置和高能量耗散能力来消除这些外力。 WRI的应用要求了解其行为以及各种几何特性与输入力之间的关系。本工作研究了在垂直和水平方向上准静态载荷下,钢丝绳直径,线圈数量和位移幅度等几何参数对WRI磁滞行为的影响。使用从磁滞力-位移曲线计算得出的参数评估了不同WRI的磁滞行为:能量损耗比(ELR)和有效刚度。研究表明,几何性能显着影响有效刚度,而不是能量损耗率。可以看出,增加的位移幅度会导致ELR降低,从而导致阻尼能力下降。研究还证实,钢丝绳隔离器通过其刚度和高能量耗散能力具有良好的阻尼能力。

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