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Experimental and finite element study on the lateral response of modified rectangular fiber-reinforced elastomeric isolators (MR-FREIs)

机译:改性矩形纤维增强弹性体隔离器(MR-FREIs)的横向响应的实验和有限元研究

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摘要

Fiber-reinforced elastomeric isolators (FREIs) have been shown to be viable and potentially inexpensive devices for seismic mitigation of low-rise buildings. FREIs utilize fiber material for the reinforcing layers resulting in lower weight and manufacturing costs compared to conventional steel-reinforced elastomeric isolators (SREIs). Experimental test results have shown that modifying FREIs, by cutting holes in the center portion of the isolators or removing sections from the sides, can enhance their lateral response characteristics. This study investigates the lateral response of modified rectangular FREIs (MR-FREIs) through experimental tests and 3D finite element analysis. Experimental test results of five FREIs with and without modifications are used to evaluate the 3D finite element models. These models are subsequently used to investigate the effect of modifications on the lateral behavior of the isolators, in addition to the stress and strain demands in the elastomer and fiber reinforcement layers.
机译:纤维增强的弹性体隔离器(FREI)已被证明是可行的且潜在廉价的设备,可用于低层建筑的减震。与传统的钢增强弹性体隔离器(SREI)相比,FREI将纤维材料用于增强层,从而降低了重量和制造成本。实验测试结果表明,通过在隔离器的中心部分切孔或从侧面移除部分来修改FREI,可以增强其侧向响应特性。本研究通过实验测试和3D有限元分析研究了改性矩形FREI(MR-FREI)的横向响应。五个经过修改和未经修改的FREI的实验测试结果均用于评估3D有限元模型。这些模型随后用于研究修改对隔离器横向性能的影响,以及弹性体和纤维增强层中的应力和应变需求。

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