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首页> 外文期刊>Bulletin of earthquake engineering >Sensitivity analysis of carbon fiber-reinforced elastomeric isolators based on experimental tests and finite element simulations
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Sensitivity analysis of carbon fiber-reinforced elastomeric isolators based on experimental tests and finite element simulations

机译:基于实验测试和有限元模拟的碳纤维增强弹性体隔离器的灵敏度分析

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摘要

Conventional steel-based rubber bearings are being replaced by fiber reinforced elastomeric isolators (FREI) due to their high weight and manufacturing cost. Compared to existing rubber bearings, FREIs have superior performance and as a result can control the seismic response of structures more efficiently. This study aims to simulate the performance of rectangular carbon FREIs (C-FREIs) produced through a simple and cost-effective manufacturing process. Additionally, the effect of different factors including the number and the thickness of rubber layers, as well as the thickness of carbon fiber reinforced sheets are investigated on the performance of C-FREIs through sensitivity analyses based on the results obtained from finite element simulations. The results show that by increasing the number and thickness of rubber layers, the efficiency of C-FREIs degrades in terms of vertical strength and damping capacity, however, the performance improves in terms of lateral flexibility. Another important observation is that the increasing thickness of fiber-reinforced layers can increase the vertical rigidity of the base isolator. The vertical stiffness has the most sensitivity to the thickness of elastomeric layers and the thickness of CFR sheets while, when the number of rubber layers increases, the effective lateral stiffness is mostly affected.
机译:常规的钢基橡胶轴承由于其高重量和制造成本而被纤维增强弹性隔离器(FREI)取代。与现有的橡胶轴承相比,FREI具有卓越的性能,因此可以更有效地控制结构的地震响应。这项研究旨在模拟通过简单且具有成本效益的制造工艺生产的矩形碳FREI(C-FREI)的性能。此外,基于有限元模拟的结果,通过敏感性分析,研究了橡胶层数量和厚度以及碳纤维增强板厚度等不同因素对C-FREI性能的影响。结果表明,通过增加橡胶层的数量和厚度,C-FREI的效率在垂直强度和阻尼能力方面会降低,但是在横向柔韧性方面性能会提高。另一个重要的观察结果是,纤维增强层厚度的增加可以增加基础隔离器的垂直刚度。垂直刚度对弹性体层的厚度和CFR片材的厚度最敏感,而当橡胶层数增加时,有效的横向刚度将受到最大影响。

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