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首页> 外文期刊>Latin American Journal of Solids and Structures >A numerical study on seismic response of self-centring precast segmental columns at different post-tensioning forces
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A numerical study on seismic response of self-centring precast segmental columns at different post-tensioning forces

机译:自定心预制分段柱在不同后张力下地震响应的数值研究

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Precast bridge columns have shown increasing demand over the past few years due to the advantages of such columns when compared against conventional bridge columns, particularly due to the fact that precast bridge columns can be constructed off site and erected in a short period of time. The present study analytically investigates the behaviour of self-centring precast segmental bridge columns under nonlinear-static and pseudo-dynamic loading at different prestressing strand levels. Self-centring segmental columns are composed of prefabricated reinforced concrete segments which are connected by central post-tensioning (PT) strands. The present study develops a three dimensional (3D) nonlinear finite element model for hybrid post-tensioned precast segmental bridge columns. The model is subjected to constant axial loading and lateral reverse cyclic loading. The lateral force displacement results of the analysed columns show good agreement with the experimental response of the columns. Bonded post-tensioned segmental columns at 25%, 40% and 70% prestressing strand stress levels are analysed and compared with an emulative monolithic conventional column. The columns with a higher initial prestressing strand levels show greater initial stiffness and strength but show higher stiffness reduction at large drifts. In the time-history analysis, the column samples are subjected to different earthquake records to investigate the effect post-tensioning force levels on their lateral seismic response in low and higher seismicity zones. The results indicate that, for low seismicity zones, post-tensioned segmental columns with a higher initial stress level deflect lower lateral peak displacement. However, in higher seismicity zones, applying a high initial stress level should be avoided for precast segmental self-centring columns with low energy dissipation capacity.
机译:预制桥柱在过去几年中显示出与常规桥柱相比的优势,这是由于此类柱的优势所致,特别是由于预制桥柱可以在异地建造并在短时间内竖立的事实。本研究分析性地研究了在不同的预应力钢绞线水平下,在非线性静态和拟动力荷载下,自定心分段桥桥的行为。自定心分段柱由预制的钢筋混凝土分段组成,这些分段通过中央后张预应力(PT)股线连接。本研究为混合后张法预制节段桥柱开发了三维(3D)非线性有限元模型。该模型承受恒定的轴向载荷和横向反向循环载荷。分析柱的侧向力位移结果与柱的实验响应吻合良好。分析了在预应力股应力为25%,40%和70%时的键合后张式分段柱,并将其与传统的整体式乳化柱进行了比较。初始预应力钢绞线水平较高的柱子,其初始刚度和强度更高,但在较大的漂移下,其刚度降低率更高。在时程分析中,对柱样本进行不同的地震记录,以研究后张拉力水平对其在低地震带和高地震带中的横向地震响应的影响。结果表明,对于低地震区,具有较高初始应力水平的后张节理柱会偏转较低的横向峰值位移。但是,在地震活动性较高的地区,对于耗能能力低的预制分段自定心柱,应避免施加较高的初始应力水平。

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