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3D-Finite element modeling of lead rubber bearing using high damping material

机译:使用高阻尼材料的铅橡胶轴承的3D有限元建模

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Lead Rubber Bearing (LRB) has been widely applied for seismic protection of mid and high-rise buildings around the world. Its excellent energy dissipation becomes the most important aspect of this isolation system thanks to the plasticity and recovery behavior of the lead core. Aiming to develop a deeper knowledge on the behavior of LRB’s, a 3D detailed finite element (FE) modeling is performed in Abaqus FE software. Some important parameters involved in the model are plasticity of the lead core and hyper-elasticity and viscosity of the rubber material. The parameters for rubber material are derived from the results of experimental works in the laboratory, including uniaxial tensile test and relaxation test. The bearing model is then subjected to a cyclic shear-test under constant vertical load. The result of the 3D-FE model is then compared with the analytic-Abaqus model for LRB isolators, developed in the literature. Finally, both 3D-FE model and analytic model result in a good agreement on the shear behaviour of the presented LRB.
机译:铅橡胶轴承(LRB)已广泛应用于世界各地的中高层建筑的地震防护。由于引线芯的可塑性和恢复性能,其出色的能量耗散成为该隔离系统最重要的方面。为了深入了解LRB的行为,在Abaqus FE软件中执行了3D详细的有限元(FE)建模。该模型涉及的一些重要参数是铅芯的可塑性以及橡胶材料的超弹性和粘度。橡胶材料的参数来自实验室的实验结果,包括单轴拉伸试验和松弛试验。然后在恒定的垂直载荷下对轴承模型进行循环剪切测试。然后将3D-FE模型的结果与文献中开发的LRB隔离器的解析Abaqus模型进行比较。最后,3D-FE模型和解析模型都与所提出的LRB的剪切行为达成了良好的一致性。

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