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Experimental and finite element study on the compression properties of Modified Rectangular Fiber-Reinforced Elastomeric Isolators (MR-FREIs)

机译:改性矩形纤维增强弹性隔离器(MR-FREIs)压缩特性的实验和有限元研究

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This study investigates the compressive behavior of Modified Rectangular Fiber-Reinforced Elastomeric Isolators (MR-FREIs). The geometric modifications are introduced to reduce the horizontal stiffness and increase the energy dissipation of the isolation system, allowing long rectangular isolators that provide uniform support along walls to be utilized. It is of critical importance that MR-FREIs maintain adequate vertical stiffness to satisfy the requirements for an isolation system. Experimental data from vertical tests of four rectangular FREIs with and without geometric modifications is used to evaluate a three-dimensional (3D) finite element (FE) model. The 3D FE model is then used to conduct a parametric study on two MR-FREI configurations with varying geometry. The parametric study investigates the effect of the geometric modifications on the vertical stiffness and compression modulus in addition to stress and strain distributions in the elastomer and fiber reinforcement. The study identifies that, similar to annular isolators, introducing a minor geometric modification to the interior of the isolator results in a significant decrease in vertical stiffness and compression modulus. This influence is considerably less for geometric modifications positioned on the exterior of the isolator.
机译:这项研究调查改性矩形纤维增强的弹性体隔离器(MR-FREIs)的压缩行为。引入了几何修改以减小水平刚度并增加隔离系统的能量耗散,从而允许使用沿墙壁提供均匀支撑的长矩形隔离器。至关重要的是,MR-FREI保持足够的垂直刚度以满足隔离系统的要求。来自具有和不具有几何修改的四个矩形FREI的垂直测试的实验数据用于评估三维(3D)有限元(FE)模型。然后将3D FE模型用于对两种具有不同几何形状的MR-FREI配置进行参数研究。参数研究研究了几何变形对垂直刚度和压缩模量的影响,以及弹性体和纤维增强材料中的应力和应变分布。研究发现,类似于环形隔离器,对隔离器内部进行较小的几何修改会导致垂直刚度和压缩模量显着降低。对于位于隔离器外部的几何修改,此影响要小得多。

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