Evaluation of Seismic Performance Focusing on Increasing Response of Lead Rubber Bearing (LRB) and Over Strength of RC Pier During Earthquake

Naito Nobuyuki, Park Kyeonghoon, Mazda Taiji, Uno Hiroshige, Kawakami Masahide
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引用次数: 1

Abstract

The characteristics of the seismic bearing change depending on various factors. When an earthquake occurs, the behavior of the bridge may differ from the values expected in the structural design. The shear deformation of the seismic bearing may increase, but it is difficult to reach the fracture deformation. This paper studied the effect of the stiffness due to various dependency and durability on Lead Rubber Bearings (LRB) and the over strength of bridge piers on the bearing behavior when an earthquake occurred. As a result, if the stiffness of LRB reduces within the criteria, seismic performance can be expected safety even if the shear strain designed in the current design is greater than the allowable shear strain. The reason is that the hardening phenomenon in the high strain region of the laminated rubber bearing suppresses the displacement. Also, since the seismic bridges with over strength of the piers have come near elastic behavior when an earthquake occurs, shear strain is easy to
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基于铅橡胶支座和钢筋混凝土桥墩地震反应的抗震性能评价
地震支座的特性随各种因素而变化。当地震发生时,桥梁的性能可能与结构设计中的预期值不同。地震支座的剪切变形可能增大,但难以达到断裂变形。研究了铅橡胶支座的各种依赖刚度和耐久性以及桥墩的过强对地震作用下支座性能的影响。因此,如果LRB的刚度在准则范围内减小,即使当前设计中设计的剪切应变大于允许的剪切应变,其抗震性能也可以达到预期的安全性。其原因是叠合橡胶支座高应变区的硬化现象抑制了位移。此外,由于桥墩强度过大的抗震桥梁在地震发生时已接近弹性状态,因此很容易产生剪切应变
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