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Tuning the lateral response of unbonded fiber reinforced elastomeric isolators (U-FREIs) through horizontal holes: Experimental and numerical findings

机译:调整非粘结纤维增强弹性隔振器(U-FREI)通过水平孔的横向响应:实验和数值结果

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摘要

Fiber-Reinforced Elastomeric Isolators (FREIs) are elastomeric devices introduced as a low-cost alternative to the well-known Steel-Reinforced Elastomeric Isolators (SREIs). As common in rubber-based devices, the application of FREIs to lightweight structures is challenging as slender bearings tend to be unstable under large horizontal displacements. This paper discusses the effects of a simple modification, consisting of drilled horizontal holes through the elastomeric layers of the bearings, on the lateral response of FREIs. A desirable hardening response and a stability range up to 100 of shear strain has been obtained on modified bearings. This result has been confirmed by experimental tests and finite element analyses. Findings of this work show how the proposed modification allows (i) to reduce the horizontal stiffness of FREIs, (ii) to increase the stable range of lateral deformations of the devices and (iii) to obtain a desired hardening behavior under large horizontal displacements without instability.
机译:纤维增强弹性隔振器 (FREI) 是作为众所周知的钢增强弹性隔振器 (SREI) 的低成本替代品而推出的弹性体设备。在橡胶基设备中很常见,FREI在轻质结构中的应用具有挑战性,因为细长轴承在大水平位移下往往不稳定。本文讨论了简单修改(包括在轴承的弹性层上钻水平孔)对 FREI 横向响应的影响。在改进后的轴承上获得了理想的硬化响应和高达 100% 剪切应变的稳定性范围。该结果已通过实验试验和有限元分析得到证实。这项工作的结果表明,所提出的修改如何允许 (i) 降低 FREI 的水平刚度,(ii) 增加装置横向变形的稳定范围,以及 (iii) 在大水平位移下获得所需的硬化行为而不会不稳定。

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