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Structural and nonstructural performance of a seismically isolated building using stable unbonded fiber-reinforced elastomeric isolators

机译:使用稳定的未粘结纤维增强弹性体隔离器的隔震建筑的结构和非结构性能

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摘要

Stable unbonded fiber-reinforced elastomeric isolators (SU-FREIs) exhibit a characteristic horizontal softening and stiffening response, similar to other adaptive devices such as the triple friction pendulum and sliding systems with variable curvature. The transition between the softening and stiffening occurs at a displacement corresponding to a unique deformation known as full rollover. In this paper, the full rollover displacement of SU-FREIs is altered by using modified support geometry (MSG), a geometric modification of the upper and lower supports applied to tailor the hysteresis loops of the isolator. Experimental results are used to calibrate a numerical model of a base-isolated structure. The model demonstrates that the stiffening regime provides minimal restraint against displacements during events that meet or exceed the maximum considered earthquake. A parametric study revealed that the level of stiffening required to restrain displacements during large events is significant. This increase in stiffness is reflected in an increase in the response of the structure and light nonstructural components. Full rollover and MSG is considered advantageous to maintain horizontal stability and provide control over the stiffening of SU-FREIs. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:稳定的未粘合纤维增强弹性体隔离器(SU-FREI)表现出特征性的水平软化和硬化响应,类似于其他自适应设备,例如三重摩擦摆和可变曲率的滑动系统。软化和硬化之间的过渡发生在一个位移上,该位移对应于被称为完全翻转的独特变形。在本文中,通过使用改进的支撑几何形状(MSG)来改变SU-FREI的整个侧倾位移,MSG是对上下支撑物进行几何修改以适应隔离器的磁滞回线。实验结果用于校准碱基隔离结构的数值模型。该模型表明,在达到或超过最大地震考虑的事件中,加劲机制对位移的抑制作用最小。一项参数研究表明,在大事件中抑制位移所需的加固水平很重要。刚度的增加反映在结构和轻型非结构部件的响应增加中。完全翻滚和味精被认为有利于保持水平稳定性并提供对SU-FREI刚度的控制。版权所有(c)2015 John Wiley&Sons,Ltd.

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