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Seismic performance and damage assessment of reinforced concrete bridge piers with lap-spliced longitudinal steels

机译:搭接纵筋钢筋混凝土桥墩的抗震性能及破坏评估

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摘要

It is known that lap splices in the longitudinal reinforcement of reinforced concrete (RC) bridge columns are not desirable for seismic performance, but it is sometimes unavoidable. Lap splices were practically located in the potential plastic hinge region of most bridge columns that were constructed before the 1992 seismic design provisions of the Korea Bridge Design Specification. The objective of this research is to evaluate the seismic performance of reinforced concrete (RC) bridge piers with lap splicing of longitudinal reinforcement in the plastic hinge region, to develop an enhancement scheme for their seismic capacity by retrofitting with glassfiber sheets, and to assess a damage of bridge columns subjected to seismic loadings for the development of rational seismic design provisions in low or moderate seismicity region. Nine (9) test specimens with an aspect ratio of 4 were made with three confinement ratios and three types of lap splice. Quasi-static tests were conducted in a displacement-controlled way under three different axial loads. A significant reduction of displacement ductility was observed for test columns with lap splices of longitudinal reinforcements, whose displacement ductility could be greatly improved by externally wrapping with glassfiber sheets in the plastic hinge region. A damage of the limited ductile specimen was assessed to be relatively small.
机译:众所周知,钢筋混凝土(RC)桥柱的纵向钢筋中的搭接对于抗震性能是不理想的,但有时是不可避免的。搭接接头实际上位于大多数桥梁立柱的潜在塑料铰链区域,这些桥梁是在1992年《韩国桥梁设计规范》的抗震设计规定之前建造的。这项研究的目的是评估在塑料铰链区域中进行纵向钢筋搭接的钢筋混凝土(RC)桥墩的抗震性能,通过对玻璃纤维板进行改型来制定抗震能力的增强方案,并评估地震荷载作用下桥梁柱的破坏,为中低地震活动区的合理抗震设计提供依据。制作了九个(9个)长宽比为4的试样,具有三个约束比和三种搭接类型。在三个不同的轴向载荷下,以位移控制的方式进行了准静态测试。对于带有纵向钢筋搭接接头的测试柱,观察到位移延展性显着降低,通过在塑料铰链区域中用玻璃纤维板外部包裹,可以大大提高位移延展性。有限的延性试样的损坏被评估为相对较小。

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